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Tax Saver Health Check

Tax Saver Health Check near me in North Goa

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Tax saver health checkup
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The Tax Saver Health Check is tailored to meet your varying health needs and give clues about potential disorders and deficiencies at an early stage. The package allows you to take proactive measures to manage your health issues along with saving your money by providing you with a tax deduction for up to Rs. 5,000 under Section 80D of the Income Tax Act*. It is available at an affordable price in North Goa with Tata 1mg Labs. 

The package comprises a wide range of blood tests, including a Serum Calcium, Serum Iron Studies Basic, Erythrocyte Sedimentation Rate (ESR), Complete Blood Count (CBC), Random Blood Sugar (RBS), Diabetic Screen, Total IgE, Vitamin D (25-Hydroxy), Liver Function Test (LFT), Thyroid Profile Total (T3, T4 & TSH), Kidney Function Test (KFT) with Electrolytes, and Lipid Profile (Non-Fasting). 

An overnight fasting is preferred before getting the Tax Saver Health Check, however it is not mandatory. 

*for more details, refer to www.incometaxindia.gov.in   

 

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Understanding Tax Saver Health Check

By opting for the Tax Saver Health Check you can significantly reduce your tax burden. As per Section 80D of the Income Tax Act, you are entitled to deductions from your taxable income for preventive health checkups, regardless of whether you have health insurance. This implies that beyond just monitoring your health, these checkups play a crucial role in your financial planning. It is advisable to undergo these health checkups once or twice a year or as per your doctor’s recommendation, ensuring a thorough assessment of your well-being.

The Tax Saver Health Check includes a serum calcium test that helps assess bone health and nerve function; the Diabetic Screen and Random Blood Sugar (RBS) tests that help detect diabetes and monitor blood glucose levels over time; serum Iron studies (Basic) to help diagnose iron deficiency or overload and to differentiate different types of anemia; Complete Blood Count (CBC) and Erythrocyte Sedimentation Rate (ESR) test to assess overall health and inflammation levels in the body; Total IgE test for allergies; Vitamin D (25-Hydroxy) test to assess bone health and immune function; Liver Function Test (LFT) to assess liver function; Kidney Function Test (KFT) with Electrolytes to assess kidney function and to determine electrolyte imbalance; Lipid profile (Non-fasting) to assess lipid levels and cardiovascular health; and Thyroid Profile (Total T3, T4 & TSH) to assess the health of thyroid gland.

An overnight fasting is preferred before getting the Tax Saver Health Check, however it is not mandatory. Inform your doctor about any medications or supplements you are taking, as some may affect the test results and may need to be adjusted or temporarily discontinued before the test. 

Lab test results may vary across laboratories. Abnormal test results require an expert interpretation, therefore, never try to self-medicate at home based solely on these results, and always consult a doctor for proper understanding of the test results. The test results will help your doctor make recommendations for lifestyle modifications such as diet and exercise, and determine whether medication/treatment will be required to manage your condition and improve your quality of life. 

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What does Tax Saver Health Check measure?

Contains 62 tests

The Tax Saver Health Package offers a comprehensive range of diagnostic tests aimed at promoting preventive healthcare and early detection of potential health issues. This package includes essential tests such as Serum Calcium, Serum Iron Studies Basic, Erythrocyte Sedimentation Rate (ESR), Complete Blood Count (CBC), Random Blood Sugar (RBS), Diabetic Screen, Total IgE, Vitamin D (25-Hydroxy), Liver Function Test (LFT), Thyroid Profile Total (T3, T4 & TSH), Kidney Function Test (KFT) with Electrolytes, and Lipid Profile (Non-Fasting). These tests collectively assess various aspects of health, from metabolic and endocrine function to cardiovascular and renal health. By facilitating early diagnosis and monitoring of key health indicators, the Tax Saver Health Check empowers individuals to take proactive steps towards maintaining their well-being and potentially reducing long-term healthcare costs.

The Serum Calcium test measures the levels of calcium in the body. Calcium is the most abundant mineral in the body; most of it is present in the bones and teeth, and the remaining portion (around 1%) is found in the blood. It is usually present in two forms in blood in about equal amounts: "bound calcium," which is attached to proteins in the blood, and "free calcium or ionized calcium," which is not attached to any protein. 

The Serum Calcium test cannot be used to check for lack of calcium in your diet or osteoporosis (loss of calcium from bones) as the body can have normal calcium levels even in dietary calcium deficiency. Moreover, the body can normalize mild calcium deficiency by releasing the calcium stored in bones.

Know more about Serum Calcium

  • HbA1c (Glycosylated Hemoglobin)

  • The HbA1c (Glycosylated Hemoglobin) test precisely measures the percentage of sugar-coated or glycated hemoglobin in your blood. The test results represent the proportion of hemoglobin in your blood that has been glycated. 

    Hemoglobin, a vital protein found in red blood cells, is responsible for transporting oxygen throughout the body. Hemoglobin A is the most abundant form of hemoglobin, and when blood sugar levels increase, a higher proportion of hemoglobin A becomes glycated. As red blood cells have a lifespan of approximately 120 days, the sugar molecules remain attached to the hemoglobin for the duration of the cell's life. Consequently, the HbA1c (Glycosylated Hemoglobin) test offers insight into your average blood sugar levels over the past 8 to 12 weeks.

    What Do the Results Mean?

    Pathological Factors

    Test Parameter

    Interpretation (possible causes)

    ⇩ Low HbA1c

    • Recent significant blood loss or transfusion

    • Hemolytic anemia (increased red blood cell turnover)

    • Certain hemoglobin variants interfering with test accuracy

    ⇧ High HbA1c

    • Poorly controlled diabetes mellitus

    • Iron deficiency anemia

    • Chronic kidney disease

    • Hyperthyroidism (may slightly increase HbA1c)

    • Certain hemoglobinopathies affecting measurement

    Key: ⇧: Indicates High Levels , ⇩: Indicates Low Levels

    Physiological Factors

     🧒Age: HbA1c tends to increase slightly with age, even in non-diabetics.

    🫄Pregnancy: HbA1c levels typically decrease due to increased red blood cell turnover, especially in the second and third trimesters.

    Lifestyle Factors

     🥗Diet: Consistently high sugar intake leads to elevated HbA1c over time.

    😟Stress: Chronic stress can affect blood glucose levels and thus HbA1c.

    😴Sleep: Poor sleep quality and sleep disorders may worsen glucose control and raise HbA1c.

    🚬Smoking: Smoking can increase insulin resistance and raise HbA1c levels.

    🍷Alcohol: Excessive alcohol use can cause fluctuations in blood sugar and affect HbA1c accuracy.

    Disclaimer: This information is for educational purposes only and should not replace professional medical advice, diagnosis, or treatment. Always consult your healthcare provider for personalized guidance.

    What Do Normal HbA1c Levels Mean?

    A normal HbA1c level is generally below 5.7%. This indicates that your blood sugar has been well controlled over the past 2–3 months. Staying in this range suggests your body is managing glucose effectively and helps reduce the risk of future health problems.

    What High HbA1c Levels Indicate?

    An HbA1c level between 5.7% and 6.4% usually suggests prediabetes, where blood sugar is higher than normal but not yet in the diabetic range. A level of 6.5% or above typically indicates diabetes. 

    What to Do if Your HbA1c Is Higher Than Normal?

    If your HbA1c level is above the recommended range, try not to panic. Many people are able to bring it down with the right lifestyle changes, such as healthier eating, regular physical activity, and proper medication when needed. It is important to consult your doctor, who can guide you on the best steps for managing and improving your HbA1c.

    What Do Low Levels of HbA1c Indicate?

    Low HbA1c level (below 4%) is uncommon and may point to issues such as excess insulin use, anemia, or other conditions that shorten the lifespan of red blood cells. Since low readings can have different underlying causes, always consult a doctor to understand what they mean in your specific case.

    Can HbA1c Results Be Inaccurate?

    Yes. Certain conditions such as recent blood transfusion, pregnancy, liver or kidney disorders etc., can affect the test accuracy. If your results do not match your symptoms or overall health, your doctor may suggest repeating the test or additional testing. In hemoglobinopathies, where the normal form of hemoglobin (HbA1) is reduced or absent, HbA1c values may be inaccurate or may not be reported at all. In such cases, results should be interpreted along with other tests like fasting blood sugar, post-prandial blood sugar, or the Fructosamine test.

    What Factors Can Affect HbA1c Results?

    Though it is a reliable test, several factors can influence accuracy:

    • Blood disorders such as anemia, sickle cell trait, or chronic blood loss
    • Recent blood transfusion 
    • Kidney or liver diseases
    • High-dose vitamin supplementation (such as vitamin C or E)
    • Certain medications, including those for HIV or anemia
    • Pregnancy (second and third trimester)
    • Ethnic differences in hemoglobin structure (hemoglobinopathies)

    What Follow-Up Tests May Be Required?

    Based on your HbA1c results, your doctor may recommend additional tests to get a clearer picture of your health or to monitor possible complications. These may include: 

    Test Name

    Primary Purpose

    Fasting blood sugar test /Random blood sugar test

    Measures blood sugar levels at a single point in time

    Lipid Profile

    Evaluates cholesterol and overall heart risk

    Urine Microalbumin

    Detects early signs of kidney damage

    Liver/Kidney Function Tests

    Monitors organ health and diabetes-related complications

    Thyroid Profile

    Assesses metabolism and hormone balance

    How Does HbA1c Differ from Other Blood Glucose Tests?

    It is important to understand how the HbA1c (Glycosylated Hemoglobin) test differs from other common blood sugar tests: 

    Fasting Blood Glucose (FBS): Measures blood sugar at a single point in time, usually after 8–12 hours of fasting.

    Random Blood Glucose (RBS): Measures blood sugar at any time of the day, regardless of meals, giving a quick snapshot of current levels.

    Oral Glucose Tolerance Test (OGTT): Measures how the body processes sugar by checking blood glucose before and after drinking a glucose solution.

    Postprandial Blood Sugar Test (PPBS): Measures blood sugar levels after a meal (usually 2 hours post eating) to assess how well the body manages glucose following food intake.

  • Average Glucose (For last 60 - 90 days)

The Serum Iron Studies Basic package measures the level of iron in the body. It comprises a series of blood tests, including a serum iron test that measures the level of iron in the blood, a Total Iron-Binding Capacity (TIBC) test that reflects the body's iron stores, an unsaturated iron binding capacity (UIBC) test that reflects binding of iron with transferrin which is the main protein that binds with iron, and transferrin saturation test that checks how much transferrin is saturated with iron.

Know more about Serum Iron Studies Basic

  • Total Iron Binding Capacity

  • The Total Iron Binding Capacity test measures the ability of your blood to bind and transport iron, and therefore reflects your body's iron stores. TIBC correlates with the amount of transferrin, a protein, in your blood, that helps bind iron and facilitates its transportation in the blood. Usually, about one-third of the transferrin measured is being used to transport iron, and this is called transferrin saturation.

  • Iron, Serum

  • An Iron, Serum test determines iron levels in the blood and can help diagnose conditions like anemia, or iron overload in the body. People usually suffer from low iron levels in the blood if they prefer a diet that has low iron content, or if their body has trouble absorbing the iron from the foods or supplements they intake. Low iron levels can also occur due to intense blood loss or even during pregnancy. Similarly, an excess amount of iron in the blood can occur due to over-intake of iron supplements, blood transfusions, or if you are suffering from a condition called hemochromatosis (a rare genetic disorder that causes too much iron to build up in the body or cause problems in the body to remove excess iron). 

    Therefore, doctors often suggest an Iron, Serum to help check the status of your iron level, get valuable information about your nutritional well-being, detect potential health issues (if any), and take timely preventive measures.

  • Unsaturated Iron Binding Capacity

  • An Unsaturated Iron Binding Capacity test determines the reserve capacity of transferrin, i.e., the portion not yet saturated with iron. The iron-binding capacity of our body can be segregated into two parts – Total Iron Binding Capacity (TIBC) and Unsaturated Iron Binding Capacity (UIBC). UIBC refers to the capacity of transferrin, a protein that transports iron, to bind with additional iron. In easy terms, it represents the available "slots" on transferrin to carry iron molecules. Unlike iron saturation, which assesses the occupied slots, UIBC measures the unoccupied ones.

  • Transferrin Saturation

  • The Transferrin Saturation test determines an individual’s iron status by using the ratio of serum iron concentration and total iron binding capacity (TIBC) as a percentage. The test tells us how much iron in the blood is bound to transferrin, the main protein in the blood that binds to iron and transports it throughout the body. Under normal conditions, transferrin is one-third saturated with iron, so about two-thirds of its capacity is held in reserve. This test is often employed alongside others to evaluate iron levels and diagnose conditions like iron deficiency anemia if transferrin saturation is low or hemochromatosis (an iron overload disorder) if transferrin saturation is higher than normal.

The ESR (Erythrocyte Sedimentation Rate) test measures how fast red blood cells (erythrocytes) settle in a tube over one hour.

When your body is inflamed, certain proteins, mainly fibrinogen, increase in the blood. These proteins cause the red blood cells to stick together in stacks. These stacks settle faster, leading to a higher ESR.

The ESR test shows that inflammation is present. However, it cannot tell you exactly where the inflammation is or what is causing it. That’s why doctors usually do this test along with other tests. This helps them understand and treat your health problems.

Know more about ESR (Erythrocyte Sedimentation Rate)

The CBC (Complete Blood Count) test measures the number of red blood cells (RBCs), white blood cells (WBCs), and platelets. Each of these blood cells performs essential functions–RBCs carry oxygen from your lungs to the various body parts, WBCs help fight infections and other diseases, and platelets help your blood to clot. Therefore, determining their levels can provide significant health information. A CBC test also determines the hemoglobin level, a protein in RBC that carries oxygen from the lungs to the rest of your body. Evaluating all these components together can provide important information about your overall health.

Know more about CBC (Complete Blood Count)

  • Differential Leukocyte Count

  • There are five types of WBCs: neutrophils, lymphocytes, monocytes, eosinophils, and basophils. A Differential Leukocyte Count test measures the percentage of each type of WBC in the blood. Leukocytes or WBCs are produced in the bone marrow and defend the body against infections and diseases. Each type of WBC plays a unique role to protect against infections and is present in different numbers.

    This further contains

    • Differential Monocyte Count
    • Differential Basophil Count
    • Differential Eosinophil Count
    • Differential Neutrophil Count
    • Differential Lymphocyte Count
  • Red Blood Cell Count

  • The Red Blood Cell Count test measures the total number of red blood cells in your blood. RBCs are the most abundant cells in the blood with an average lifespan of 120 days. These cells are produced in the bone marrow and destroyed in the spleen or liver. Their primary function is to help carry oxygen from the lungs to different body parts. The normal range of RBC count can vary depending on age, gender, and the equipment and methods used for testing.

  • Hb (Hemoglobin)

  • The Hb (Hemoglobin) test measures the concentration of hemoglobin in your blood. Hemoglobin binds oxygen molecules and carries them to body tissues while removing carbon dioxide. Low hemoglobin suggests reduced oxygen-carrying capacity. It can be due to anemia, bleeding, nutritional deficiencies (iron, vitamin B12, folate), or chronic disease. High hemoglobin may occur in dehydration, living at high altitudes, smoking, or diseases like polycythemia vera.

  • Platelet Count

  • The Platelet Count test measures the average number of platelets in the blood. Platelets are disk-shaped tiny cells originating from large cells known as megakaryocytes, which are found in the bone marrow. After the platelets are formed, they are released into the blood circulation. Their average life span is 7-10 days. 

    Platelets help stop the bleeding, whenever there is an injury or trauma to a tissue or blood vessel, by adhering and accumulating at the injury site and releasing chemical compounds that stimulate the gathering of more platelets. A loose platelet plug is formed at the site of injury and this process is known as primary hemostasis. These activated platelets support the coagulation pathway that involves a series of steps, including the sequential activation of clotting factors; this process is known as secondary hemostasis. After this step, there is a formation of fibrin strands that form a mesh incorporated into and around the platelet plug. This mesh strengthens and stabilizes the blood clot so that it remains in place until the injury heals. After healing, other factors come into play and break the clot down so that it gets removed. In case the platelets are not sufficient in number or not functioning properly, a stable clot might not form. These unstable clots can result in an increased risk of excessive bleeding. 

  • Total Leukocyte Count

  • The Total Leukocyte Count test measures the numbers of all types of leukocytes, namely neutrophil, lymphocyte, monocyte, eosinophil, and basophil, in your blood. Leukocytes or WBCs are an essential part of our immune system. These cells are produced in the bone marrow and defend the body against infections and diseases. Each type of WBC plays a unique role to protect against infections and is present in different numbers.

  • Hematocrit

  • The Hematocrit test measures the proportion of red blood cells (RBCs) in your blood as a percentage of the total blood volume. It is a crucial part of a complete blood count (CBC) and helps in assessing your blood health. RBCs are responsible for carrying oxygen from the lungs to different parts of the body. The hematocrit test provides valuable information about your blood's oxygen-carrying capacity.

    Higher-than-normal amounts of RBCs produced by the bone marrow can cause the hematocrit to increase, leading to increased blood density and slow blood flow. On the other hand, lower-than-normal hematocrit can be caused by low production of RBCs, reduced lifespan of RBCs in circulation, or excessive bleeding, leading to a reduced amount of oxygen being transported by RBCs. Monitoring your hematocrit levels is essential for diagnosing and managing various blood-related disorders.

  • Mean Corpuscular Volume

  • The Mean Corpuscular Volume test measures the average size of your red blood cells, which carry oxygen through your body. This test tells whether your RBCs are of average size and volume or whether they are bigger or smaller.

  • Mean Corpuscular Hemoglobin

  • An MCH test measures the average amount of hemoglobin in a single red blood cell (RBC). Hemoglobin is an iron-containing protein in RBCs, and its major function is to transport oxygen from the lungs to all body parts. This test provides information about how much oxygen is being delivered to the body by a certain number of RBCs.

  • Mean Corpuscular Hemoglobin Concentration

  • An MCHC test measures the average amount of hemoglobin in a given volume of RBCs. MCHC is calculated by dividing the amount of hemoglobin by hematocrit (volume of blood made up of RBCs) and then multiplying it by 100. 

  • Mean Platelet Volume

  • An MPV test measures the average size of the platelets in your blood. Platelets are disk-shaped tiny cells originating from large cells known as megakaryocytes, which are found in the bone marrow. After the platelets are formed, they are released into the blood circulation. Their average life span is 7-10 days. 

    Platelets help stop bleeding whenever there is an injury or trauma to a tissue or blood vessel by adhering and accumulating at the injury site, and by releasing chemical compounds that stimulate the gathering of more platelets. After these steps, a loose platelet plug is formed at the site of injury, and this process is known as primary hemostasis. These activated platelets support the coagulation pathway that involves a series of steps including the sequential activation of clotting factors; this process is known as secondary hemostasis. After this, there is a formation of fibrin strands that form a mesh incorporated into and around the platelet plug. This mesh strengthens and stabilizes the blood clot so that it remains in place until the injury heals. After healing, other factors come into play and break the clot down so that it gets removed. In case the platelets are not sufficient in number or are not functioning properly, a stable clot might not form. These unstable clots can result in an increased risk of excessive bleeding. 

  • PDW

  • The PDW test reflects variability in platelet size, and is considered a marker of platelet function and activation (clot formation in case of an injury). This marker can give you additional information about your platelets and the cause of a high or low platelet count. Larger platelets are usually younger platelets that have been recently released from the bone marrow, while smaller platelets may be older and have been in circulation for a few days. Higher PDW values reflect a larger range of platelet size, which may result from increased activation, destruction and consumption of platelets.

  • RDW CV

  • The RDW CV test which is part of red cell indices, helps identify characteristics of red blood cells. RDW (red cell distribution width) measures the variations in the sizes of red blood cells, indicating how much they differ from each other in a blood sample. RDW is expressed as RDW-CV, a coefficient of variation. A higher RDW may suggest more variation in red cell sizes, while a lower RDW indicates more uniform red cell sizes.

  • Absolute Leucocyte Count

  • The Absolute Leucocyte Count test measures the total number of white blood cells (leucocytes) in the given volume of blood. It examines different types of white blood cells such as neutrophils, lymphocytes, monocytes, basophils and eosinophils. These cells tell about the status of the immune system and its ability to fight off infections and other conditions like inflammation, allergies, bone marrow disorders etc.

    This further contains

    • Absolute Monocyte Count
    • Absolute Eosinophil Count
    • Absolute Neutrophil Count
    • Absolute Basophil Count

The RBS (Random Blood Sugar) test measures the amount of glucose circulating in your blood at any random time. Since glucose levels vary during the day depending on meals, physical activity, and hormone balance, this test provides a quick snapshot of your body’s ability to regulate sugar.

Persistently high random glucose levels may indicate insulin resistance, prediabetes, or diabetes mellitus (type 1 or type 2). It can also be used to check how well diabetes is being managed with medication, diet, or lifestyle changes.

What Do the Results Mean?

Pathological Factors 

Test Parameter

Interpretation (possible causes)

Normal

  • No diabetes

Borderline/Elevated

  • Pre-diabetes (can be due to insulin resistance, and other risk factors like obesity, unhealthy diet, sedentary lifestyle, etc.)

High levels

  • Diabetes

Physiological Factors

🧒 Age: Glucose levels may increase slightly with age, even in healthy individuals.

🫄 Pregnancy: Hormonal changes during pregnancy can temporarily alter blood sugar levels.

Lifestyle Factors

🥙 Diet: High sugar intake and irregular meals can affect glucose readings.

😴 Sleep: Poor sleep quality, irregular sleep patterns, or chronic stress may elevate glucose levels.

🚬 Smoking & Alcohol: Both factors can interfere with insulin function and lead to altered blood sugar test results.

Disclaimer: This information is for educational purposes only and should not replace professional medical advice, diagnosis, or treatment. Always consult your healthcare provider for personalized guidance.

What Do Normal RBS Levels Mean?

Normal RBS levels mean your body is effectively controlling glucose and insulin balance, indicating good metabolic health.

What Do High Levels of RBS Indicate?

High RBS suggests prediabetes or diabetes, depending on the severity. It could also occur temporarily due to stress, illness, or certain medications.

What to Do if Your RBS Is Higher Than Normal?

If your RBS level is higher than normal, consult a healthcare provider for further evaluation. They may recommend a fasting blood sugar, HbA1c, or glucose tolerance test to confirm the diagnosis and guide lifestyle or treatment changes such as diet, exercise, or medication.

What Do Low Levels of RBS Indicate?

Low RBS levels (hypoglycemia) may occur due to skipped meals, excessive insulin or diabetes medication, prolonged fasting, or intense physical activity. Symptoms can include sweating, dizziness, shakiness, confusion, or fainting. Immediate medical attention is advised if these symptoms occur.

Can RBS Results Be Inaccurate?

Yes. Certain conditions or external factors, such as recent meals, illness, medications (like steroids), or lack of sleep, can affect RBS results. If your readings do not align with your symptoms or overall health, your doctor may recommend repeating the test or performing additional investigations to confirm accuracy.

What Factors Can Affect RBS (Random Blood Sugar) test Results?

Though it is a reliable test, several factors can influence accuracy:

  • Heavy meals or high sugar intake before the test
  • Physical exertion or stress
  • Illness or infection
  • Lack of sleep or irregular sleep pattern
  • Dehydration
  • Hormonal imbalance (pregnancy, menstruation)
  • Medications like steroids or diuretics
  • Alcohol or caffeine intake

What Follow-Up Tests May Be Required?

Based on your RBS (Random Blood Sugar) test results, your doctor may recommend additional tests to confirm diabetes or assess blood sugar control. These may include:

Table: Tests Commonly Ordered Alongside Random Blood Sugar Test

Test Name

Primary Purpose

HbA1c (Glycosylated Hemoglobin)

Measures average blood sugar over 2–3 months

Postprandial Blood Sugar (PPBS)

Checks glucose levels 2 hours after eating

FBS (Fasting Blood Sugar)

Measures glucose after 8–12 hours of fasting

Oral Glucose Tolerance Test (OGTT)

Evaluates how the body processes sugar

Lipid Profile

Evaluates cholesterol and overall heart risk

Urine Microalbumin

Detects early signs of kidney damage

How Does RBS (Random Blood Sugar) Differ from Other Blood Tests?

PPBS (Postprandial Blood Sugar): Measures blood sugar 2 hours after eating a meal.

FBS (Postprandial Blood Sugar): Measures glucose after 8–12 hours of fasting.

OGTT (Oral Glucose Tolerance Test): Measures blood sugar before and after consuming glucose.

Glycated Hemoglobin (HbA1c): Reflects average blood sugar over the past 2–3 months.

Know more about RBS (Random Blood Sugar)

The Total IgE (Immunoglobulin E) test is used to quantify the total level of IgE antibodies in your blood. Immunoglobulins are antibodies (proteins) secreted by plasma cells (immune cells) when the body identifies a dangerous foreign substance like bacteria, viruses, or allergens. There are five basic forms of immunoglobulins: IgA, IgG, IgM, IgD, and IgE. Of these, IgE plays a primary role in allergic reactions to allergens such as pollen, dust, pet dander, mold, latex, some foods (such as eggs, peanuts, or strawberries), or insect stings.

Unlike other antibodies, IgE is primarily associated with immune responses to allergenic substances, such as plant pollen, latex, pet dander, mold, eggs, peanuts, bee venom, and strawberries. Typically, IgE is present in tiny amounts in the blood. When the immune system encounters an allergen, it triggers the production of IgE antibodies. The Total IgE test measures the concentration of these IgE antibodies in the blood, providing insights into the presence and severity of allergies.

Know more about Total IgE

The Vitamin D (25-Hydroxy) test measures the levels of vitamin D in the body. Vitamin D is an essential nutrient that can be synthesized in the body upon healthy exposure to sunlight or absorbed from dietary sources. It majorly exists in two forms: vitamin D2 (ergocalciferol) and vitamin D3 (cholecalciferol). Vitamin D2 is present in plants, such as yeast or mushrooms, and is available as a supplement in fortified foods, and vitamin D3 is found in foods like cheese, green vegetables, mushrooms, egg yolks, and fatty fish.

Both forms of vitamin D need to be converted in the liver and kidneys before the body can use them effectively. This test shows the total level of vitamin D (D2 + D3) circulating in the body and guides your doctor in recommending the right treatment or lifestyle changes if needed.

Know more about Vitamin D (25-Hydroxy)

The LFT (Liver Function Test) helps determine the health of the liver by measuring various key markers in the blood such as bilirubin, enzymes, and proteins. These components help detect inflammation, infection, diseases, etc., of the liver and monitor the damage due to liver-related issues.

Know more about LFT (Liver Function Test)

  • Gamma Glutamyl Transferase

  • Gamma-Glutamyl Transferase (GGT) is an enzyme found in various organs, with the highest concentration in the liver. Usually, this enzyme is present in low levels in the blood. However, when there is liver damage or disease, GGT is released into the bloodstream, causing an increase in GGT levels. In addition to the liver, GGT can also be elevated in conditions affecting the bile ducts or the pancreas. It is usually, the first liver enzyme to rise in the blood when there is any damage or obstruction in the bile duct, making it one of the most sensitive liver enzyme tests for detecting bile duct problems.

  • SGPT (Alanine Transaminase)

  • An SGPT (Alanine Transaminase) test measures the amount of alanine transaminase (ALT) or SGPT enzyme in your blood. ALT is most abundantly found in the liver but is also present in smaller amounts in other organs like the kidneys, heart, and muscles. Its primary function is to convert food into energy. It also speeds up chemical reactions in the body. These chemical reactions include the production of bile and substances that help your blood clot, break down food and toxins, and fight off an infection.

    Elevated levels of ALT in the blood may indicate liver damage or injury. When the liver cells are damaged, they release ALT into the bloodstream, causing an increase in ALT levels. Therefore, the SGPT/ALT test is primarily used to assess the liver's health and to detect liver-related problems such as hepatitis, fatty liver disease, cirrhosis, or other liver disorders.

  • Alkaline Phosphatase (ALP)

  • An Alkaline Phosphatase (ALP) test measures the quantity of ALP enzyme present throughout the body. The main sources of this enzyme are the liver and bones. It exists in different forms depending on where it originates, such as liver ALP, bone ALP, and intestinal ALP. In the liver, it is found on the edges of the cells that join together to form bile ducts. 

    ALP levels can be increased during pregnancy as it is found in the placenta of pregnant women. It is also higher in children because their bones are in the growth phase. ALP is often high during growth spurts (a short period when an individual experiences quick physical growth in height and body weight).

  • SGOT (Aspartate Aminotransferase)

  • An SGOT (Aspartate Aminotransferase) test measures the levels of serum glutamic-oxaloacetic transaminase (SGOT), also known as aspartate aminotransferase (AST), an enzyme produced by the liver. SGOT is present in most body cells, most abundantly in the liver and heart. The primary function of this enzyme is to convert food into glycogen (a form of glucose), which is stored in the cells, primarily the liver. The body uses this glycogen to generate energy for various body functions.

  • Protein Total, Serum

  • The Protein Total, Serum test measures the amount of proteins in the body. Proteins are known as the building blocks of all cells and tissues. They play a crucial role in the growth and development of most of your organs and in making enzymes and hormones. There are two types of proteins found in the body, namely albumin and globulin. About 60% of the total protein is made up of albumin, which is produced by the liver. It helps to carry small molecules such as hormones, minerals, and medicines throughout the body. It also serves as a source of amino acids for tissue metabolism. On the other hand, globulin is a group of proteins that are made by the liver and the immune system. They play an important role in liver functioning, blood clotting, and fighting off infections.

    This further contains

    • Albumin/Globulin Ratio, Serum
    • Protein Total
    • Serum Albumin
    • Globulin, Serum
  • Bilirubin (Total, Direct and Indirect)

  • The Bilirubin (Total, Direct and Indirect) test measures the level of three forms of bilirubin such as total bilirubin, direct (conjugated bilirubin), and indirect (unconjugated) bilirubin in the blood. Total bilirubin represents the sum of direct and indirect bilirubin. Direct bilirubin is the water-soluble form of bilirubin that has been processed by the liver via a conjugation process with glucuronic acid and is ready to be excreted into the bile ducts and ultimately into the intestines. Indirect bilirubin is the water-insoluble form of bilirubin that has not yet been processed by the liver and is bound to albumin in the blood. It is formed in the spleen and liver during the breakdown of hemoglobin from old or damaged red blood cells and cannot be excreted directly by the liver. Instead, it is transported to the liver, where it undergoes conjugation to become direct bilirubin. 

    Getting tested with the Bilirubin (Total, Direct and Indirect) test provides valuable information into various aspects of liver function, bile duct health, and the body’s ability to break down and eliminate bilirubin.

    This further contains

    • Bilirubin Direct
    • Bilirubin Total
    • Bilirubin Indirect

The Thyroid Profile Total (T3, T4 & TSH) measures the circulating amounts of three key hormones:

  • Total T3​ (Total Triiodothyronine): T3​ is the most active thyroid hormone and plays a major role in metabolism. The Thyroid Profile Total test measures both the T3​ that is bound to proteins and the T3​ that is free in the blood.
  • Total T4​ (Total Thyroxine): T4​ is the primary hormone secreted by the thyroid gland. The Thyroid Profile Total test measures both protein-bound and free T4​. It is a good indicator of overall thyroid hormone production.
  • TSH (Thyroid Stimulating Hormone): This hormone, released by the pituitary gland, controls the production of T4​ and T3​ by the thyroid. It is the best screening test to determine if the thyroid is functioning normally.

What Do the Results Mean?

Pathological Factors 

TSH

 

T3

T4

Interpretation 

(Possible causes) 

 

High 

 

 

 

Normal 

Normal 

Subclinical hypothyroidism 

(autoimmune thyroid disease) 

 

Low 

Normal 

 

 

 

Normal

Subclinical hyperthyroidism (autoimmune thyroid disease, like Graves’, etc.)

 

High 

 

 

 

High

 

 

 

High

Secondary hyperthyroidism

(TSH-secreting pituitary adenoma, thyroid hormone resistance syndrome, chorionic gonadotropin-secreting tumours, gestational thyrotoxicosis, etc.)  

 

 

Low

 

 

Normal/High

 

 

Normal/High

Hyperthyroidism 

(Graves’ disease, etc.) 

 

 

 

 

 

 

Low

 

 

 

 

 

 

Low

 

 

 

 

 

 

Low

Non-thyroidal illness

(Sepsis, inflammatory conditions, etc.) / Secondary hyperthyroidism 

 (TSH-secreting pituitary adenoma, Thyroid hormone resistance syndrome, Chorionic gonadotropin-secreting tumours, Gestational thyrotoxicosis, etc.)  

Note: 

  • Total T3​ and T4​ concentrations are altered by changes in thyroxine-binding globulin (TBG) capacity, which can be affected by pathological or physiological conditions.
  • In pregnancy, the serum TSH reference range is different from the general population

Physiological Factors

🫄 Pregnancy: Thyroid hormone requirements increase, often leading to changes in TSH and total T4/T3 levels, especially in the first trimester. 

⏱️ Time of Day: TSH levels show a circadian variation, peaking between 2 and 4 a.m. and at a minimum between 6 and 10 p.m. This variation can influence the measured serum TSH concentration.

💊Medications/Supplements: Certain drugs (like estrogen, etc.) or supplements (like biotin) can significantly alter TSH, T3​, or T4​ results.

🤒 Non-Thyroidal Illness (NTI): Severe illness not related to the thyroid can temporarily alter or suppress TSH and T3​/T4​ levels, making results difficult to interpret.

Lifestyle Factors

🧀 Diet: Severe dieting or malnutrition can decrease thyroid hormone production. Sufficient iodine intake is essential for making T3​ and T4​.

😴 Stress: Chronic, high-level stress may influence the hypothalamic-pituitary-thyroid axis, potentially affecting TSH regulation.

🚬 Smoking: Smoking has been linked to changes in thyroid hormone metabolism and is a risk factor for autoimmune thyroid diseases like Graves' disease.

Disclaimer: This information is for educational purposes only and should not replace professional medical advice, diagnosis, or treatment. Always consult your healthcare provider for personalized guidance.

What Do Normal Thyroid Profile Results Mean? 

Normal levels of TSH, total T3​, and total T4​ suggest that your thyroid gland is functioning correctly, producing and releasing the right amount of hormones to regulate your body's metabolism and energy.

What Do High Levels of Thyroid Profile Results Indicate?

High levels of thyroid profile results, mainly T3, T4, or a low TSH, typically indicate an overactive thyroid, known as hyperthyroidism. This condition occurs when the thyroid gland produces excess hormones, speeding up metabolism and causing symptoms such as unexplained weight loss, sensitivity to heat, irritability, mood swings, muscle weakness, hyperactivity, difficulty sleeping, etc. If you have these symptoms or abnormal lab results, it is important to consult your doctor for diagnosis and appropriate management.​

What to Do if Your Thyroid Profile Results Are Higher Than Normal?

If your results are outside the normal range, consult your doctor immediately. They will evaluate your symptoms and medical history and may order follow-up tests (like free T3​ or free T4​) to confirm the diagnosis and determine the best course of action, which may include medication to restore hormone balance.

What Do Low Levels of Thyroid Profile Results Indicate?

Low levels in thyroid profile results, such as low T3 or T4 and high TSH, usually indicate an underactive thyroid gland or hypothyroidism. This condition slows your metabolism and can lead to symptoms like persistent fatigue, weight gain, sensitivity to cold, dry skin, thinning hair, irregular or heavier-than-usual menstrual periods, etc. If you notice these symptoms or have abnormal results, consult your doctor for further evaluation and management.

Can Thyroid Profile Results Be Inaccurate?

Yes. Sometimes, rare factors like the presence of certain antibodies or pituitary disorders can lead to discordant results that do not match your symptoms. In such cases, your doctor will suggest some additional tests to find the right diagnosis. Always consult your doctor to understand your test results correctly.

What Factors Can Affect Thyroid Profile Results?

Though a reliable test, some factors can influence accuracy:

  • Biotin supplements (must be stopped 2 days before the test)
  • Pregnancy
  • Severe illness (non-thyroidal Illness)
  • Certain medications (e.g., high-dose estrogen, etc.)
  • Timings of the sample collection 
  • Recent changes in your thyroid medication dosage

What Follow-Up Tests May Be Required?

Table: Tests Commonly Ordered Alongside Thyroid Profile Total

Test Name

Primary Purpose

Free T3​ and Free T4​

Measures the active, unbound hormones to confirm the diagnosis, as they are not affected by protein binding changes (like in pregnancy)

Thyroid Antibody Tests (e.g., TPO Ab)

Helps diagnose autoimmune thyroid diseases like Hashimoto's or Graves’ disease

Thyroid Scan and Uptake

Uses a radioactive tracer to visualize the thyroid gland and assess how well it is absorbing iodine, helping to determine the cause of hyperthyroidism

Thyroid Ultrasound

Provides images of the gland to check for nodules, goiter size, or other structural abnormalities

How Does a Thyroid Profile Differ from Other Thyroid Tests?

Thyroid Profile (TSH, Total T3​, Total T4​): Provides a comprehensive view at the overall function of the thyroid axis.

Free T3​/T4​: Measures only the biologically active, unbound portion, offering a more accurate assessment when protein levels are abnormal (e.g., pregnancy, certain medications).

Thyroid Antibody Tests: Identify whether an autoimmune response is causing the thyroid dysfunction.

Know more about Thyroid Profile Total (T3, T4 & TSH)

  • Thyroxine - Total (T4)

  • The Thyroxine - Total (T4) test measures both the bound and unbound/free form of thyroxine (T4) hormone in the blood. T4 exists in the blood in two forms: bound (attached to proteins) and free (not attached to proteins). Most of the T4 circulating in the blood is bound to proteins and only a small part is free. It is necessary to maintain a fine balance of these forms to ensure the proper functioning of the body.

  • Triiodothyronine - Total (T3)

  • The Triiodothyronine - Total (T3) test measures triiodothyronine, also known as T3, hormone that is produced by the thyroid gland. T3 hormone plays an important role in regulating the body's metabolism, energy levels, and growth & development. It exists in the blood in two forms: free T3 and bound T3. Free T3 is not bound to proteins in the blood and is the active form of T3. Whereas, bound T3 is bound to proteins, such as albumin and thyroid hormone binding globulin (THBG), which prevent it from entering the body tissues.

  • TSH (Thyroid Stimulating Hormone) Ultrasensitive

  • The TSH (Thyroid Stimulating Hormone) Ultrasensitive test measures the levels of TSH hormone in the blood. TSH is produced by the pituitary gland located at the base of the brain. Its function is to stimulate and regulate the functioning of the thyroid gland. It signals the thyroid gland to increase or decrease the production of thyroid hormones T3 and T4 when their levels are low or high, respectively. Therefore, when the levels of T3 & T4 decrease, the pituitary gland is stimulated to release TSH. This high TSH level, in turn, stimulates the thyroid gland to release more thyroid hormones (T3 & T4). Vice versa happens when the levels of thyroid hormones increase.

    What Do the Results Mean?

    Pathological Factors

    Test Result

    Interpretation

    Possible Causes / Conditions

    Low TSH

    Hyperthyroidism (overactive thyroid)

    • Graves’ disease (autoimmune)

    • Thyroid nodules producing excess hormones

    • Thyroiditis (inflammation of the thyroid)

    • Excess thyroid hormone therapy

    High TSH

    Hypothyroidism (underactive thyroid)

    • Primary hypothyroidism (e.g., Hashimoto thyroiditis)

    • Iodine deficiency

    • Pituitary gland dysfunction (secondary hypothyroidism is rare but possible)

    • Recovery from acute illness

    Key: ⇧: Indicates High Levels , ⇩: Indicates Low Levels

    Physiological Factors

     🧒Age: TSH may slightly increase with age.

    🫄 Pregnancy: TSH levels may drop in early pregnancy because of hormonal changes.

    🧑‍🦳 Gender: Women generally have higher TSH levels than men and are more prone to thyroid imbalances, especially during pregnancy, after childbirth, or around menopause.

    ⚖️ Body Weight & Metabolism: Weight gain or loss can slightly affect TSH levels.

    Lifestyle Factors

    🥗 Diet: Too little iodine can increase TSH, while too much may lower it.

    😟 Stress: Long-term stress can disturb thyroid hormone balance.

    💊 Medications: Some medicines, like steroids or lithium, can change TSH levels.

    🛌 Sleep Patterns: Poor sleep can affect thyroid hormone control.

    🚬 Smoking & Alcohol: Smoking may lower TSH, and too much alcohol can harm thyroid function.

    🏃 Physical Activity: Regular exercise supports thyroid health, but extreme workouts can cause temporary TSH changes.

    What Do Normal TSH (Thyroid Stimulating Hormone) Ultrasensitive Levels Mean?

    Normal TSH levels indicate that your thyroid is functioning well, producing the right amount of thyroid hormones (T3 and T4) to regulate metabolism, energy, and overall body functions. Balanced TSH suggests your body is maintaining proper hormonal balance, supporting healthy weight, energy levels, mood, and cardiovascular health.

    What Do High Levels of TSH (Thyroid Stimulating Hormone) Ultrasensitive Indicate?

    High TSH levels usually mean the thyroid is underactive (hypothyroidism). The pituitary gland releases extra TSH to make the thyroid produce more hormones.

    Common causes include:

    • Autoimmune thyroid problems like Hashimoto’s thyroiditis
    • Pituitary gland disorders
    • Recovery after illness or thyroid surgery
    • Some medicines or a lack of nutrients

    What to Do if Your TSH (Thyroid Stimulating Hormone) Is Higher Than Normal?

    If your TSH level is high, talk to your doctor. They may: 

    • Recheck with more thyroid tests (T3, T4, or antibodies)
    • Review your medicines, diet, and health history
    • Recommend thyroid hormone treatment if required
    • Track symptoms like tiredness, weight gain, feeling cold, or hair loss

    Timely management can help control thyroid imbalances effectively.

    What Do Low Levels of TSH (Thyroid Stimulating Hormone) Ultrasensitive Indicate?

    Low TSH levels usually mean your thyroid is overactive (hyperthyroidism). This happens when the thyroid releases excess thyroid hormones, so the pituitary gland reduces TSH production.

    Possible causes include:

    • Graves’ disease (autoimmune thyroid disorder)
    • Thyroid nodules that produce extra hormones
    • Thyroid inflammation (thyroiditis)
    • Taking too much thyroid medicine

    If your TSH is low, your doctor may suggest more tests like T3, T4, thyroid antibody tests, or an ultrasound to find the cause and decide the right treatment.

    Can TSH Results Be Inaccurate?

    Yes. Certain factors such as pregnancy, recent illness, medications, or underlying pituitary or thyroid disorders can affect TSH levels and lead to inaccurate results. If your results do not match your symptoms or overall health, your doctor may suggest repeating the test or additional testing. 

    What Factors Can Affect TSH (Thyroid Stimulating Hormone) Ultrasensitive Results?

    The TSH (Thyroid Stimulating Hormone) Ultrasensitive test is reliable, but a few factors can affect its accuracy, such as:

    • Recent thyroid surgery or radioactive iodine treatment
    • Taking biotin supplements
    • Severe illness or hospitalization
    • Certain medicines (like amiodarone or lithium)
    • Pregnancy

    What Follow-Up Tests May Be Required?

    Based on your TSH results, your doctor may suggest more tests to better understand your thyroid health. These tests may include:

    Table: Tests Commonly Ordered Alongside TSH

    Test Name

    Primary Purpose

    Free T4 (Thyroxine)

    Measures circulating thyroid hormone to assess thyroid function

    Free T3 (Triiodothyronine)

    Evaluates active thyroid hormone levels in the blood

    Anti-TPO / Anti-Tg Antibodies

    Detects autoimmune thyroid disorders like Hashimoto’s or Graves’ disease

    Thyroid Ultrasound

    Assesses thyroid size, nodules, and structural abnormalities

    Lipid Profile

    Monitors cholesterol and cardiovascular risk, which can be affected by thyroid disorders

    Liver/Kidney Function Tests

    Checks organ health, as thyroid imbalances can influence metabolism and organ function

    Hormone Assessments

    Evaluates pituitary or adrenal involvement if needed

    How Does TSH Test Differ from Other Thyroid Tests?

    It is important to understand how the TSH test differs from other common thyroid tests:

    TSH (Thyroid-Stimulating Hormone): Measures how much signal the pituitary gland is sending to the thyroid to make hormones.

    Total T4: Measures the overall amount of thyroxine (T4) in the blood, including both bound and unbound forms, to understand thyroid hormone production.

    Free T4 (FT4): Checks the active form of T4 that is available for use by the body. It helps assess how well the thyroid is functioning.

    Total T3: Measures the total amount of triiodothyronine (T3), the active hormone derived from T4, often helpful in detecting hyperthyroidism.

    Free T3 (FT3): Evaluates the unbound, active T3 level to understand how efficiently T4 is being converted to T3.

    Thyroid Antibody Tests (TPOAb, TgAb): Identify autoimmune thyroid conditions like Hashimoto’s thyroiditis or Graves’ disease.

The KFT with Electrolytes (Kidney Function Test with Electrolytes) test determines the health of your kidneys. It evaluates parameters such as creatinine, blood urea nitrogen (BUN), uric acid, electrolytes (sodium, potassium, and chloride), blood urea and BUN/ creatinine ratio. This test also helps diagnose possible kidney disorders like inflammation, infection, or functional damage.

Know more about KFT with Electrolytes (Kidney Function Test with Electrolytes)

  • Serum Creatinine

  • The Serum Creatinine test measures the creatinine level, a byproduct produced by the wear and tear of muscles during energy production. Since kidneys help filter creatinine, this test helps determine how well your kidneys work. Usually, high levels of creatinine in the blood signal diminished kidney function. At the same time, low levels may indicate decreased muscle mass.

    What Do the Results Mean?

    Pathological Factors 

    Test Parameter

    Interpretation (possible causes)

    ⇩ Low Creatinine

    • Myasthenia gravis, muscular dystrophy, certain medications (e.g., cimetidine, trimethoprim)

    ⇧ High Creatinine

    • Blockage in the urinary tract, pre- and postrenal azotemia, impaired kidney function, loss of body fluid (dehydration), and muscle diseases such as gigantism and acromegaly.

    Key: ⇧: Indicates High Levels , ⇩: Indicates Low Levels

    Physiological Factors

    🧒 Age: Creatinine levels may decrease with age (due to reduction in muscle mass).

    🫄 Pregnancy: Slightly lower levels can be seen due to physiological changes in kidney function during pregnancy.

    Lifestyle Factors

    🥗 Diet: High protein intake may transiently increase creatinine.

    🏋️ Exercise: Intense physical activity can temporarily elevate creatinine levels.

    💊 Medications: Some medicines, such as NSAIDs, antibiotics, or certain blood pressure medications, may influence kidney function and creatinine levels.

    Disclaimer: This information is for educational purposes only and should not replace professional medical advice, diagnosis, or treatment. Always consult your healthcare provider for personalized guidance.

    What Do Normal Serum Creatinine Levels Mean?

    Normal serum creatinine levels indicate that the kidneys are functioning properly and effectively filtering waste products from the blood.

    What Do High Levels of Serum Creatinine Indicate?

    High serum creatinine may indicate impaired kidney function, dehydration, urinary tract obstruction, or other conditions affecting renal health.

    What to Do if Your Serum Creatinine Is Higher Than Normal?

    If your creatinine level is higher than normal, consult your doctor for proper guidance. They may recommend additional tests, lifestyle adjustments, medication review, or referral to a nephrologist.

    What Do Low Levels of Serum Creatinine Indicate?

    Low levels are uncommon but may indicate low muscle mass, malnutrition, or liver disease. Always discuss results with your healthcare provider.

    Can Serum Creatinine Results Be Inaccurate?

    Yes, serum creatinine results can sometimes be inaccurate. Factors such as severe muscle loss, certain medications or supplements, and variations or errors in laboratory test methodologies can affect the accuracy of the results.

    What Factors Can Affect Serum Creatinine Results?

    Though a reliable test, several factors can influence accuracy:

    • Muscle mass, age, sex
    • Diet, hydration status
    • Medications affecting kidney function
    • Severe illness or trauma
    • Hyperbilirubinemia

    What Follow-Up Tests May Be Required?

    Depending on your serum creatinine results, your doctor may recommend additional tests to get a clearer picture of kidney health. These can include urine tests, such as urine protein or microalbumin or cystatin C, to detect early kidney damage; an eGFR calculation to estimate kidney filtration efficiency; kidney imaging, like an ultrasound, to check for structural abnormalities; and electrolyte or kidney function panels to assess overall kidney performance and detect any imbalances. Fasting is not recommended for this test, you can eat and drink as per your daily routine.

    Table: Tests Commonly Ordered Alongside the Serum Creatinine Test

    Test Name

    Primary Purpose

    Blood Urea Nitrogen (BUN and/or Urea)

    Evaluates kidney function along with creatinine

    Urine Routine & Microscopy

    Detects protein, blood, or infection in urine

    eGFR

    Assesses kidney filtration efficiency

    Creatinine Clearance

    Measures kidney filtration by comparing serum and urine creatinine

    Urine Creatinine

    Monitors creatinine excretion to evaluate kidney function

    How Does the Serum Creatinine Test Differ from Other Kidney Tests?

    The Serum Creatinine test directly measures kidney filtration and indicates how efficiently the kidneys remove creatinine from the blood. Other kidney-related tests include:

    BUN/Urea: Gives an idea of how well your kidneys are working. The levels can change with your diet or water intake.

    Uric Acid: Checks the amount of uric acid in your blood. High levels may mean kidney or metabolism problems.

    Serum Electrolytes: Measures important minerals like sodium, potassium, and chloride to check your body’s mineral balance.

    BUN/Creatinine Ratio: Helps doctors find out if you have kidney issues or dehydration.

    eGFR: Estimates your overall kidney function based on creatinine level, age, sex, and body size.

    Creatinine Clearance: Compares blood and urine creatinine to see how well your kidneys filter waste.

    Urine Creatinine: Measures the amount of creatinine in urine to help evaluate kidney health.

    While these tests complement each other, Serum Creatinine specifically reflects kidney filtration efficiency, making it a key indicator of renal health.

  • Uric Acid, Serum

  • The Uric Acid, Serum test measures the amount of uric acid in your blood. Uric acid is a waste product formed when the body breaks down purines. Purines are the natural substances found in your body’s cells (DNA) and in certain foods like red meat, or seafood. Under normal conditions, uric acid dissolves in the blood, passes through the kidneys, and is excreted in the urine. When this process doesn’t work properly, either due to increased production or reduced elimination, the uric acid can build up in the blood. This may indicate underlying health issues such as kidney dysfunction, gout, or presence of kidney stones. In some cases, the exact reason for high uric acid levels is unclear. On the other hand, low uric acid levels are rarely a cause for concern. This test helps doctors understand if uric acid levels are within a healthy range and whether further evaluation or treatment is needed.

  • Blood Urea Nitrogen

  • The Blood Urea Nitrogen test measures the levels of urea nitrogen in the blood. Blood urea is a waste product that is formed in the liver when you eat food and the protein is metabolized into amino acids. This process leads to the production of ammonia that is further converted into urea. Both ammonia and urea are nitrogenous compounds. Your liver releases urea into the blood which is then carried out to the kidneys. In the kidneys, urea is filtered from the blood and flushed out of the body via urine. This is a continuous process, so a small amount of urea nitrogen always remains in the blood.

    In the case of a kidney or liver disease, there is a change in the amount of urea present in the blood. If your liver produces urea in an increased amount or if there is any problem in kidney functioning, there might be difficulty in filtering out the waste products from the blood, which can result in increased urea levels in the blood.

  • BUN/Creatinine Ratio

  • The BUN/Creatinine Ratio test helps compare the levels of blood urea nitrogen to that of creatinine in your body. Urea is a waste product that is formed in the liver when you eat protein, which is then metabolized into amino acids. This process leads to the production of ammonia that is further converted into urea. Later, the urea is passed out of your body through the urine. On the other hand, creatinine is a byproduct produced by muscles during energy production. Therefore, the more muscle you have, the more creatinine your body produces. The kidneys remove both the urea and creatinine via urine, and this test determines how well your kidneys are functioning.

  • Blood Urea

  • The Blood Urea test measures the level of urea in the blood. Urea is a byproduct of protein metabolism. Proteins you consume in your diet are digested and converted into amino acids, which are then utilized by the body. This metabolic process produces a toxic byproduct known as ammonia. Ammonia is then rapidly converted into urea by your liver. Urea is comparatively less toxic than ammonia and is transported to the kidneys via the blood. The kidneys then filter it out through the urine. This process continues and the body keeps producing and eliminating urea, maintaining its low and steady levels in the blood.

  • Sodium

  • The Sodium test measures the amount of sodium in your body. Sodium is present in all body fluids and is found in the highest concentration in the extracellular fluid. The body absorbs the required amount of sodium through dietary salts, and the kidneys eliminate the remaining sodium. The body keeps your blood sodium within a regular and steady range by following three mechanisms:

    • By producing hormones that control the elimination of sodium through urine, such as natriuretic peptides and aldosterone.

    • By producing hormones that prevent water loss, such as antidiuretic hormone (ADH).

    • By controlling thirst (an increase in blood sodium level can make you thirsty and cause you to drink water, returning your sodium to normal).

    These mechanisms regulate the amount of water and sodium in the body and control blood pressure by keeping the amount of water in check. When the sodium level in the blood changes, the water content in your body changes. These changes can be associated with dehydration, edema, and changes in blood pressure.

  • Chloride

  • The Chloride test measures the amount of chloride in your body. Chloride is present in all body fluids and is found in the highest concentration in the blood and extracellular fluid (fluid present outside the cells). The body gets most of the chloride through dietary salt (sodium chloride or NaCl) and a small amount through other food items. The required amount of chloride is absorbed in the body and the excess amount is excreted by the kidneys through urine. When the chloride is combined with sodium it is mostly found in nature as salt. Chloride generally increases or decreases in direct relationship to sodium but may also change without any changes in sodium levels when there are problems with the body's pH. Usually, the normal blood chloride level remains steady with a slight fall after meals (because the stomach produces hydrochloric acid using chloride from the blood after we eat food).

  • Potassium

  • The Potassium test measures the levels of potassium in your body. Potassium is one of the key electrolytes that helps in the functioning of the kidneys, heart, nerves, and muscles. It also balances the effect of sodium and helps keep your blood pressure normal. The body absorbs the required amount of potassium from the dietary sources and eliminates the remaining quantity through urine. Potassium level is typically maintained by the hormone aldosterone. Aldosterone acts on the nephrons present in the kidneys and activates the sodium-potassium pump that helps the body reabsorb sodium and excrete potassium. This aids in maintaining a regular and steady potassium level in the blood.

The Lipid Profile, Non Fasting assesses the level of specific fat molecules called lipids in the blood and helps determine the risk of heart ailments. This test determines the amount of different types of lipids, including total cholesterol, low-density lipoprotein (LDL) cholesterol, very-low-density lipoprotein (VLDL) cholesterol, high-density lipoprotein (HDL) cholesterol, and triglycerides. Lipids play a pivotal role in the functioning of the body. They are crucial components of the cell membranes and hormones, provide cushioning, and are a storehouse of energy. Any alterations in the lipid levels may lead to potential heart ailments, and this makes their monitoring crucial.

Know more about Lipid Profile, Non Fasting

  • Cholesterol - LDL

  • The Cholesterol - LDL test measures the concentration of low-density lipoprotein (LDL) cholesterol in the blood. LDL cholesterol plays an important role in your body. It carries cholesterol from your liver to other parts of the body where it's needed for things like building cell walls and making hormones. However, it is often referred to as "bad" cholesterol because when present in excess in your blood, it can stick to your blood vessel walls leading to the formation of plaque, making them narrow and less flexible. When this happens, it's harder for the blood to flow, which can lead to heart problems, like heart attacks and strokes. By measuring LDL cholesterol levels, your doctor can assess your risk of developing cardiovascular diseases and can recommend appropriate preventive or treatment strategies.

  • Triglycerides

  • The Triglycerides test measures the amount of triglycerides in the blood and helps evaluate your risk of developing cardiovascular diseases. Triglycerides are a type of fat (lipid) that your body uses as a source of energy. When you consume more calories than your body needs, the excess calories are converted into triglycerides and stored in fat cells for later use. High triglyceride levels can contribute to the hardening and narrowing of arteries, increasing the risk of heart attack, stroke, and other related conditions. 

  • Cholesterol - Total

  • The Cholesterol - Total test measures the total amount of cholesterol (fats) in your blood. Cholesterol is mainly synthesized in the liver and partially in the intestines. It acts as a building block for cell membranes, is a precursor to vital hormones, and helps produce bile acids that help digest fats. Cholesterol is transported through the blood as lipoproteins: low-density lipoprotein (LDL) and high-density lipoprotein (HDL). An optimal amount of these proteins is necessary for proper body functioning.

  • Cholesterol - HDL

  • The Cholesterol - HDL test measures the concentration of high-density lipoprotein (HDL) cholesterol in the blood. HDL cholesterol plays a crucial role in maintaining cardiovascular health, as it helps transport excess low-density lipoprotein (LDL) cholesterol from the bloodstream back to the liver for excretion. This process prevents plaque buildup on the blood vessel walls, which can cause them to become narrow and less flexible. Higher HDL cholesterol levels are generally associated with a lower risk of heart problems, such as heart attacks and strokes. By measuring HDL cholesterol levels, your doctor can assess your risk of developing cardiovascular diseases and recommend appropriate preventive or treatment strategies, including lifestyle modifications and medications.

  • Very Low Density Lipoprotein

  • The Very Low Density Lipoprotein test measures the concentration of very-low-density lipoprotein (VLDL) cholesterol in the blood. VLDL cholesterol plays a vital role in the body's metabolic processes. It is produced by the liver and is used to transport triglycerides, a type of fat, from the liver to various tissues throughout the body, where they are either utilized for energy or stored for later use. Though VLDL cholesterol is essential for the body's normal functioning, it is harmful if present in excess amounts. By measuring VLDL cholesterol levels, your doctor can assess your risk of developing cardiovascular diseases and recommend appropriate preventive or treatment strategies.

  • Total Cholesterol/HDL Cholesterol Ratio

  • The Total Cholesterol/HDL Cholesterol Ratio test measures the ratio of total cholesterol and high-density lipoprotein (HDL)/good cholesterol in your blood which is a significant indicator of cardiovascular health. This ratio is calculated by dividing the total cholesterol by the HDL number. A high ratio indicates a higher amount of 'bad' cholesterol relative to 'good' cholesterol, implying a higher risk of developing heart disease. Conversely, a lower ratio implies a higher amount of 'good' cholesterol relative to 'bad' cholesterol, indicating a lower risk.

  • LDL/HDL Ratio

  • An LDL/HDL Ratio test measures the ratio of low-density lipoproteins (LDL) to high-density lipoproteins (HDL) in your blood. These two types of lipoproteins carry cholesterol throughout the body. LDL, often referred to as the 'bad' cholesterol, carries cholesterol to the cells that need it. However, if there is too much LDL cholesterol in the blood, it can combine with other substances and form plaque in the arteries, leading to cardiovascular diseases. On the other hand, HDL, often referred to as the 'good' cholesterol, helps remove other forms of cholesterol, including LDL, from the bloodstream. It transports cholesterol back to the liver, where it is broken down and eliminated from the body, thus reducing the risk of cholesterol buildup and heart disease. The LDL/HDL ratio is a significant indicator of cardiovascular health. A high ratio indicates a higher amount of 'bad' cholesterol relative to 'good' cholesterol, implying a higher risk of developing heart disease. Conversely, a lower ratio implies a higher amount of 'good' cholesterol relative to 'bad' cholesterol, indicating a lower risk.

  • Non HDL Cholesterol

  • The Non HDL Cholesterol test looks for the “bad” cholesterol particles that are likely to contribute to heart problems. These bad particles include LDL (low-density lipoprotein) cholesterol, VLDL (very-low-density lipoprotein) cholesterol, and remnants of other cholesterol-carrying molecules. Cholesterol is a waxy substance that circulates in your bloodstream and is essential for various bodily functions. However, too much of “bad” types of cholesterol can build up in your arteries and increase the risk of heart conditions. LDL and VLDL cholesterol particles are often referred to as the "bad" cholesterol because they can stick to the walls of your arteries and form plaque, narrowing the arteries and restricting blood flow to your heart. By measuring non-HDL cholesterol, your doctor can assess your risk of heart disease and determine if any interventions or lifestyle changes are needed to protect your heart.

FAQs related to Tax Saver Health Check in North Goa

The Tax Saver Health Check is a comprehensive set of blood tests aimed at evaluating various health parameters at a discounted rate. It is designed to promote regular health check-ups and facilitate early detection of health issues.
The Tax Saver Health Check includes a wide range of blood tests such as Serum Calcium test, Diabetic Screen test, Random Blood Sugar (RBS) test, Erythrocyte Sedimentation Rate (ESR) test, Complete Blood Count (CBC) test, Lipid Profile (non fasting), Total IgE test, Vitamin D (25-Hydroxy) test, Liver Function Test (LFT), Thyroid Profile Total (T3, T4 & TSH), Kidney Function Test (KFT) with Electrolytes, and Serum Iron Studies Basic.
There is usually no risk associated with this test. However, some people may feel a slight sting when a needle is pricked or experience some bleeding, which is normal and usually not bothersome. Some people may also experience slight swelling or bruising at the site of the needle prick. Applying ice 3-4 times daily for about a week may help reduce swelling and bruising. If it does not get better, consult your doctor.
Under Section 80D of the Income Tax Act, expenses incurred on preventive health checkups qualify for tax deductions. You can claim a deduction for the amount spent on your health checkup, reducing your taxable income.
It is generally recommended to undergo a comprehensive health checkup once a year as advised by your doctor. Regular checkups aid in monitoring your health status and identifying potential health risks early.
The Tax Saver Health Check is available for everyone looking to keep a close watch on their health and simultaneously avail of tax benefits. It is especially beneficial for individuals who want to undergo preventive health screenings to catch potential health problems early. It is an excellent option for those seeking tax deductions under section 80 D of the Income Tax Act.
Yes. In North Goa, you can schedule the Tax Saver Health Check near you with Tata 1mg Labs. The package is easy to book, cost-effective, and available with a comprehensive report.
Yes, the Tax Saver Health Check is eligible for home sample collection in North Goa. With Tata 1mg Labs, you can schedule a test at your convenience, and select a date and time for sample collection that fits your schedule.
If you want to schedule the Tax Saver Health Check with Tata 1mg Labs in North Goa, the procedure is fairly easy and hassle-free. Follow these steps to book a test: 1). Visit the Lab Tests section on the Tata 1mg website. 2). Add the test you want in the cart. 3). Pick a time and date slot according to your convenience; however, do consider the necessary prerequisites while scheduling a test. 4). You will receive a notification with all the details once the test is scheduled.
Tata 1mg Labs is a pocket-friendly platform for booking lab tests in North Goa. The Tax Saver Health Check is available at an affordable price of Rs. 1250.
At Tata 1mg Labs, we understand the importance of timely results. We strive to provide fast turnaround times for test results, allowing you to get the information you need promptly. On average, we take 48 hours to provide the reports of the Tax Saver Health Check in North Goa.

Tax Saver Health Check test price for other cities

Price inNew DelhiRs. 1250
Price inKolkataRs. 1250
Price inBangaloreRs. 1250
Price inMumbaiRs. 1250
Price inGurgaonRs. 1250

How does home sample collection work?

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Other tests

Conducted by
Tata 1mg Labs
Accredited labs
Highly skilled Phlebos
Verified reports
Who will collect your samples?
Tata 1mg certified phlebotomists
Package contains 62 tests
Serum Calcium
Diabetic Screen (2)
HbA1c (Glycosylated Hemoglobin)
Average Glucose (For last 60 - 90 days)
Serum Iron Studies Basic (4)
Total Iron Binding Capacity
Iron, Serum
Unsaturated Iron Binding Capacity
Transferrin Saturation
ESR (Erythrocyte Sedimentation Rate)
CBC (Complete Blood Count) (21)
Differential Leukocyte Count (5)
Red Blood Cell Count
Hb (Hemoglobin)
Platelet Count
Total Leukocyte Count
Hematocrit
Mean Corpuscular Volume
Mean Corpuscular Hemoglobin
Mean Corpuscular Hemoglobin Concentration
Mean Platelet Volume
PDW
RDW CV
Absolute Leucocyte Count (5)
RBS (Random Blood Sugar)
Total IgE
Vitamin D (25-Hydroxy)
LFT (Liver Function Test) (11)
Gamma Glutamyl Transferase
SGPT (Alanine Transaminase)
Alkaline Phosphatase (ALP)
SGOT (Aspartate Aminotransferase)
Protein Total, Serum (4)
Bilirubin (Total, Direct and Indirect) (3)
Thyroid Profile Total (T3, T4 & TSH) (3)
Thyroxine - Total (T4)
Triiodothyronine - Total (T3)
TSH (Thyroid Stimulating Hormone) Ultrasensitive
KFT with Electrolytes (Kidney Function Test with Electrolytes) (8)
Serum Creatinine
Uric Acid, Serum
Blood Urea Nitrogen
BUN/Creatinine Ratio
Blood Urea
Sodium
Chloride
Potassium
Lipid Profile, Non Fasting (8)
Cholesterol - LDL
Triglycerides
Cholesterol - Total
Cholesterol - HDL
Very Low Density Lipoprotein
Total Cholesterol/HDL Cholesterol Ratio
LDL/HDL Ratio
Non HDL Cholesterol