Modulation of megakaryopoiesis and platelet production during inflammation

Genevieve Couldwell1, Kellie R Machlus2

  • 1Division of Hematology, Brigham and Women's Hospital, Boston, MA 02115, USA.

Thrombosis Research
|May 26, 2019
PubMed

Insights

Inflammation significantly impacts megakaryocytes (MKs), the cells that produce platelets. This review explores how inflammation reprograms MKs to generate distinct platelets, potentially aiding in immune responses and offering new therapeutic targets.

Area of Science:

  • Hematology
  • Immunology
  • Cell Biology

Background:

  • Megakaryocytes (MKs) are hematopoietic stem cell derivatives and platelet progenitors residing in bone marrow.
  • Both acute and chronic inflammation are known to alter MK differentiation and molecular composition.
  • Inflammatory cytokines may induce MK rupture, rapidly releasing platelets to compensate for inflammation-induced depletion.

Purpose of the Study:

  • To review how inflammation affects megakaryocyte production, maturation, and subsequent platelet generation.
  • To explore the concept that inflammation reprograms MKs to produce distinct, potentially pathogenic platelets.
  • To highlight the evolving roles of MKs and platelets in response to inflammation and infection.

Main Methods:

  • Literature review focusing on the effects of inflammation on megakaryopoiesis and platelet biology.
  • Analysis of existing evidence on cytokine-mediated effects on MKs.
  • Synthesis of research on MKs' potential immune functions and environmental influences.

Main Results:

  • Inflammation alters megakaryocyte differentiation and molecular profiles.
  • Cytokine release can trigger rapid platelet release via MK rupture.
  • Bone marrow environment and inflammation dictate platelet characteristics and function.

Conclusions:

  • Inflammation reprograms megakaryocytes, leading to the production of altered platelets with specific roles in immune response.
  • MKs may possess immune functions, including antigen presentation.
  • Understanding inflammation-induced changes in MKs and platelets could reveal novel therapeutic targets for inflammatory diseases.

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