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高倍体大细胞浆巨核细胞是造血干细胞的调节剂,对血小板的生成至关重要。

High ploidy large cytoplasmic megakaryocytes are hematopoietic stem cells regulators and essential for platelet production.

机构信息

Biomedical Manufacturing, Commonwealth Scientific and Industrial Research Organization, Melbourne, VIC, Australia.

Australian Regenerative Medicine Institute, Monash University, Melbourne, VIC, Australia.

出版信息

Nat Commun. 2023 Apr 13;14(1):2099. doi: 10.1038/s41467-023-37780-7.

Abstract

Megakaryocytes (MK) generate platelets. Recently, we and others, have reported MK also regulate hematopoietic stem cells (HSC). Here we show high ploidy large cytoplasmic megakaryocytes (LCM) are critical negative regulators of HSC and critical for platelet formation. Using a mouse knockout model (Pf4-Srsf3) with normal MK numbers, but essentially devoid of LCM, we demonstrate a pronounced increase in BM HSC concurrent with endogenous mobilization and extramedullary hematopoiesis. Severe thrombocytopenia is observed in animals with diminished LCM, although there is no change in MK ploidy distribution, uncoupling endoreduplication and platelet production. When HSC isolated from a microenvironment essentially devoid of LCM reconstitute hematopoiesis in lethally irradiated mice, the absence of LCM increases HSC in BM, blood and spleen, and the recapitulation of thrombocytopenia. In contrast, following a competitive transplant using minimal numbers of WT HSC together with HSC from a microenvironment with diminished LCM, sufficient WT HSC-generated LCM regulates a normal HSC pool and prevents thrombocytopenia. Importantly, LCM are conserved in humans.

摘要

巨核细胞(MK)生成血小板。最近,我们和其他人报告说,MK 还调节造血干细胞(HSC)。在这里,我们表明高倍体大细胞质巨核细胞(LCM)是 HSC 的关键负调控因子,对血小板形成至关重要。我们使用一种小鼠敲除模型(Pf4-Srsf3),该模型具有正常的 MK 数量,但基本上没有 LCM,我们证明了 BM HSC 明显增加,同时伴有内源性动员和骨髓外造血。在 LCM 减少的动物中观察到严重的血小板减少症,尽管 MK 倍体分布没有变化,内复制与血小板生成脱耦联。当来自基本上没有 LCM 的微环境的 HSC 重建致死性照射小鼠的造血时,缺乏 LCM 会增加 BM、血液和脾脏中的 HSC,并再现血小板减少症。相比之下,在使用最小数量的 WT HSC 进行竞争移植后,加上来自 LCM 减少的微环境的 HSC,足够的 WT HSC 产生的 LCM 调节正常的 HSC 池并防止血小板减少症。重要的是,LCM 在人类中是保守的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0520/10102126/32fb9ba3243e/41467_2023_37780_Fig1_HTML.jpg

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