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  2. Megakaryocyte - Wikipedia

    en.wikipedia.org/wiki/Megakaryocyte

    Platelets are held within these internal membranes within the cytoplasm of megakaryocytes. There are two proposed mechanisms for platelet release. In one scenario, these proto-platelet processes break up explosively to become platelets. [7] It is possible to visualize the spontaneous release of platelets using holotomographic live-cell imaging ...

  3. Megakaryoblast - Wikipedia

    en.wikipedia.org/wiki/Megakaryoblast

    During thrombopoiesis, the promegakaryocyte matures into the form of a megakaryocyte. From the megakaryocyte, platelets are formed. [1] The megakaryoblast is the beginning of the thrombocytic series or platelet forming series. Megakaryoblasts typically have a large oval-shaped nucleus or a nucleus that is lobed with many nuclei. [2]

  4. Thrombopoietin - Wikipedia

    en.wikipedia.org/wiki/Thrombopoietin

    Theoretical uses include the procurement of platelets for donation, [9] and recovery of platelet counts after myelosuppressive chemotherapy. [ 5 ] Trials of a modified recombinant form, megakaryocyte growth and differentiation factor (MGDF), were stopped when healthy volunteers developed autoantibodies to endogenous thrombopoietin and then ...

  5. CFU-GEMM - Wikipedia

    en.wikipedia.org/wiki/CFU-GEMM

    The CFU-GEMM cell is capable of differentiating into white blood cells, red blood cells, and platelets, all of which are normally found in circulating blood. [4] It has been suggested that eosinophils do not derive from the common myeloid progenitor in humans. [5] Chart showing the lineages of hematopoiesis.

  6. Platelet - Wikipedia

    en.wikipedia.org/wiki/Platelet

    Platelets derive from multipotent marrow stem cells. Megakaryocyte and platelet production is regulated by thrombopoietin, a hormone produced in the kidneys and liver. Each megakaryocyte produces between 1,000 and 3,000 platelets during its lifetime. An average of 10 11 platelets are produced daily in a healthy adult.

  7. Plateletpheresis - Wikipedia

    en.wikipedia.org/wiki/Plateletpheresis

    Platelets collected by using apheresis at an American Red Cross donation center. Not all platelet transfusions use platelets collected by automated apheresis. The platelets can also be separated from donations of whole blood collected in a traditional blood donation, but there are several advantages to separating the platelets at the time of collection.

  8. Platelet transfusion - Wikipedia

    en.wikipedia.org/wiki/Platelet_transfusion

    Platelet transfusions came into medical use in the 1950s and 1960s. [1] [5] It is on the World Health Organization's List of Essential Medicines. [6] [7] Some versions of platelets have had the white blood cells partially removed or been gamma irradiated which have specific benefits for certain populations. [8]

  9. Megakaryocyte–erythroid progenitor cell - Wikipedia

    en.wikipedia.org/wiki/Megakaryocyte–erythroid...

    Megakaryocyte–erythroid progenitor cells must commit to becoming either platelet-producing megakaryocytes via megakaryopoiesis or erythrocyte-producing erythroblasts via erythropoiesis. [ 2 ] [ 3 ] Most of the blood cells produced in the bone marrow during hematopoiesis come from megakaryocyte–erythroid progenitor cells.

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