Megakaryocyte Maturation

Megakaryocyte maturation is the developmental process by which hematopoietic progenitor cells become large, platelet-producing cells in the bone marrow. Driven primarily by thrombopoietin signaling, megakaryocytes undergo endomitosis, replicating their DNA without cell division, and develop polyploid nuclei, expanded cytoplasm, and a specialized demarcation membrane system. During terminal maturation, they extend proplatelet processes into marrow sinusoids, where cytoplasmic fragmentation releases circulating platelets. Studying this process clarifies how platelet production is regulated and supports research into thrombocytopenia, bleeding disorders, myeloproliferative diseases, and the development of platelet-based therapeutic strategies.

Megakaryocyte Maturation - Related Videos

Research

JoVE EoE - Immune Systems and Components

An In Vitro Method for the Differentiation of Megakaryocytes and Platelet Formation

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2025

This video demonstrates a technique for the differentiation of megakaryocytes and the formation of platelets. Hematopoietic stem progenitor cells — isolated from human umbilical cord blood — differentiate into mature megakaryocytes in the presence of thrombopoietin. The mature megakaryocytes produce cytoplasmic extensions termed proplatelets, which give rise to individual platelets.

Megakaryocyte Culture in 3D Methylcellulose-Based Hydrogel to Improve Cell Maturation and Study the Impact of Stiffness and Confinement

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Cited by 3 •

2021

It is now acknowledged that the three-dimensional environment of cells can play an important role in their behavior, maturation and/or differentiation. This protocol describes a three-dimensional cell culture model designed to study the impact of physical containment and mechanical constraints on megakaryocytes.

Isolation of Mouse Megakaryocyte Progenitors

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Cited by 3 •

2021

This method describes the purification by flow cytometry of MEP and MKp from mice femurs, tibias, and pelvic bones.

Education

JoVE Core - Cell Biology

Maturation of Endosomes

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2023

The early endosome containing internalized molecules matures through transformations in its location, morphology, intraluminal pH, and membrane protein composition. Together, these changes result in a more acidic late endosome that contains multiple intraluminal vesicles; therefore, the late endosome is also called a multivesicular body (MVB). Changes in location The maturing endosome moves along microtubules from the periphery of the cell towards the perinuclear region. This movement of the...

Research

JoVE Journal - Developmental Biology
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In Vitro Differentiation of Mature Myofibers for Live Imaging

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Cited by 38 •

2017

Muscle cells are among the most complex eukaryotic cells. We present a protocol for the in vitro differentiation of highly mature myofibers that allows for genetic manipulation and clear imaging during all developmental stages.

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