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The role of bone marrow microenvironment in platelet production and their implications for the treatment of thrombocytopenic diseases

机译:骨髓微环境在血小板产生中的作用及其对血小板减少性疾病的治疗意义

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Objectives: Impaired platelet production has been found to be an important pathological mechanism of thrombocytopenia in many diseases. Platelet generation is a complex process that mainly occurs in the bone marrow, and thus is closely regulated by the bone marrow microenvironment. This review attempts to summarize the most current knowledge referring the role of bone marrow microenvironment in the regulation of platelet production. Methods: The effects of multiple microenvironment ingredients in regulating megakaryopoiesis and thrombocytopoiesis have been discussed. Abnormalities of these components in thrombocytopenic diseases are also described. Discussions: Thrombocytopenia is a common clinical manifestation of a variety of diseases. The functional importance of platelets has driven the developments of a broad range of studies. Platelet generation mainly occurs within the bone marrow, where the cells, soluble factors, and extracellular matrix proteins collaboratively form a complex regulatory network, directing megakaryocytic proliferation and differentiation. Alteration in any part of the regulating network may result in defective platelet formation, and eventually lead to thrombocytopenia. A variety of thrombocytopenic diseases have been found to be related with the disregulated bone marrow microenvironment. Identification of the variations of these niche ingredients in certain diseases has facilitated the developments of multiple therapeutic regimes. Further studies that can combine these niche factors with their downstream regulatory factors will be beneficial for developing more effective therapies. Conclusions: Further definition of the role of bone marrow microenvironment in platelet generation may deepen our understanding of the underlying mechanisms as well as provide new therapeutic targets for thrombocytopenic diseases.
机译:目的:发现血小板生成障碍是许多疾病中血小板减少的重要病理机制。血小板生成是一个复杂的过程,主要发生在骨髓中,因此受到骨髓微环境的严格控制。本文试图总结最新的知识,这些知识涉及骨髓微环境在调节血小板产生中的作用。方法:讨论了多种微环境成分在调控巨核细胞生成和血小板生成中的作用。还描述了血小板减少性疾病中这些成分的异常。讨论:血小板减少症是多种疾病的常见临床表现。血小板的功能重要性推动了广泛研究的发展。血小板的产生主要发生在骨髓内,在那里,细胞,可溶性因子和细胞外基质蛋白共同形成一个复杂的调节网络,指导巨核细胞的增殖和分化。调节网络任何部分的改变均可能导致血小板形成缺陷,并最终导致血小板减少。已发现多种血小板减少性疾病与骨髓微环境失调有关。鉴定某些疾病中这些利基成分的变异促进了多种治疗方案的发展。可以将这些利基因素与其下游调节因素结合起来的进一步研究将有助于开发更有效的疗法。结论:进一步定义骨髓微环境在血小板生成中的作用可能加深我们对潜在机制的理解,并为血小板减少性疾病提供新的治疗靶标。

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