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  2. Total iron-binding capacity - Wikipedia

    en.wikipedia.org/wiki/Total_iron-binding_capacity

    Total iron-binding capacity (TIBC) or sometimes transferrin iron-binding capacity is a medical laboratory test that measures the blood's capacity to bind iron with transferrin. [1] Transferrin can bind two atoms of ferric iron (Fe 3+ ) with high affinity.

  3. Iron tests - Wikipedia

    en.wikipedia.org/wiki/Iron_tests

    Iron tests are groups of clinical chemistry laboratory blood tests that are used to evaluate body iron stores or ... Total iron-binding capacity (TIBC) Transferrin ...

  4. Serum iron - Wikipedia

    en.wikipedia.org/wiki/Serum_iron

    Another lab test saturates the sample to measure the total amount of transferrin; this test is called total iron-binding capacity (TIBC). These three tests are generally done at the same time, and taken together are an important part of the diagnostic process for conditions such as anemia , iron deficiency anemia , anemia of chronic disease and ...

  5. Transferrin saturation - Wikipedia

    en.wikipedia.org/wiki/Transferrin_saturation

    It is the value of serum iron divided by the total iron-binding capacity [1] of the available transferrin, the main protein that binds iron in the blood, this value tells a clinician how much serum iron is bound. For instance, a value of 15% means that 15% of iron-binding sites of transferrin are being occupied by iron.

  6. Transferrin - Wikipedia

    en.wikipedia.org/wiki/Transferrin

    Transferrin glycoproteins bind iron tightly, but reversibly. Although iron bound to transferrin is less than 0.1% (4 mg) of total body iron, it forms the most vital iron pool with the highest rate of turnover (25 mg/24 h). Transferrin has a molecular weight of around 80 kDa and contains two specific high-affinity Fe(III) binding sites.

  7. Latent iron deficiency - Wikipedia

    en.wikipedia.org/wiki/Latent_Iron_Deficiency

    Normal serum iron is between 60 and 170 micrograms per deciliter (μg/dL). [7] Normal total iron-binding capacity for both sexes is 240 to 450 μg/dL. [6] Total iron-binding capacity increases when iron deficiency exists. [4] Serum ferritin levels reflect the iron stores available in the body. [4]

  8. Sideroblastic anemia - Wikipedia

    en.wikipedia.org/wiki/Sideroblastic_anemia

    Serum Iron: high; increased ferritin levels; decreased total iron-binding capacity; high transferrin saturation; Hematocrit of about 20-30%; The mean corpuscular volume or MCV is usually normal or low for congenital causes of sideroblastic anemia but normal or high for acquired forms.

  9. Human iron metabolism - Wikipedia

    en.wikipedia.org/wiki/Human_iron_metabolism

    Of the body's total iron content, about 400 mg is devoted to cellular proteins that use iron for important cellular processes like storing oxygen (myoglobin) or performing energy-producing redox reactions (cytochromes). A relatively small amount (3–4 mg) circulates through the plasma, bound to transferrin. [9]

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