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无乙酰胆碱酯酶活性的CD41+/CD45+细胞是未成熟的,且是小鼠骨髓中主要的巨核细胞群体。

CD41+/CD45+ cells without acetylcholinesterase activity are immature and a major megakaryocytic population in murine bone marrow.

作者信息

Matsumura-Takeda Kuniko, Sogo Shinji, Isakari Yoshimasa, Harada Yasuo, Nishioka Kinue, Kawakami Takuma, Ono Toshihide, Taki Takao

机构信息

Molecular Medical Science Institute, Otsuka Pharmaceutical Co. Ltd., 463-10 Kagasuno, Tokushima, Japan.

出版信息

Stem Cells. 2007 Apr;25(4):862-70. doi: 10.1634/stemcells.2006-0363.

Abstract

Murine megakaryocytes (MKs) are defined by CD41/CD61 expression and acetylcholinesterase (AChE) activity; however, their stages of differentiation in bone marrow (BM) have not been fully elucidated. In murine lineage-negative (Lin(-))/CD45(+) BM cells, we found CD41(+) MKs without AChE activity (AChE(-)) except for CD41(++) MKs with AChE activity (AChE(+)), in which CD61 expression was similar to their CD41 level. Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs could differentiate into AChE(+), with an accompanying increase in CD41/CD61 during in vitro culture. Both proplatelet formation (PPF) and platelet (PLT) production for Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs were observed later than for Lin(-)/CD41(++)/CD45(+)/AChE(+) MKs, whereas MK progenitors were scarcely detected in both subpopulations. GeneChip and semiquantitative polymerase chain reaction analyses revealed that the Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs are assigned at the stage between the progenitor and PPF preparation phases in respect to the many MK/PLT-specific gene expressions, including beta1-tubulin. In normal mice, the number of Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs was 100 times higher than that of AChE(+) MKs in BM. When MK destruction and consequent thrombocytopenia were caused by an antitumor agent, mitomycin-C, Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs led to an increase in AChE(+) MKs and subsequent PLT recovery with interleukin-11 administration. It was concluded that MKs in murine BM at least in part consist of immature Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs and more differentiated Lin(-)/CD41(++)/CD45(+)/AChE(+) MKs. Immature Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs are a major MK population compared with AChE(+) MKs in BM and play an important role in rapid PLT recovery in vivo.

摘要

小鼠巨核细胞(MKs)通过CD41/CD61表达和乙酰胆碱酯酶(AChE)活性来定义;然而,它们在骨髓(BM)中的分化阶段尚未完全阐明。在小鼠谱系阴性(Lin(-))/CD45(+)骨髓细胞中,我们发现除了具有AChE活性(AChE(+))的CD41(++) MKs外,还有无AChE活性(AChE(-))的CD41(+) MKs,其中CD61表达与其CD41水平相似。Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs在体外培养过程中可分化为AChE(+),同时CD41/CD61伴随增加。Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs的前血小板形成(PPF)和血小板(PLT)产生均比Lin(-)/CD41(++)/CD45(+)/AChE(+) MKs出现得晚,而在这两个亚群中几乎检测不到MK祖细胞。基因芯片和半定量聚合酶链反应分析显示,就包括β1-微管蛋白在内的许多MK/PLT特异性基因表达而言,Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs处于祖细胞和PPF准备阶段之间。在正常小鼠中,骨髓中Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs的数量比AChE(+) MKs高100倍。当用抗肿瘤药物丝裂霉素-C导致MK破坏并随之出现血小板减少时,给予白细胞介素-11后,Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs会导致AChE(+) MKs增加并随后使PLT恢复。得出的结论是,小鼠骨髓中的MKs至少部分由未成熟的Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs和分化程度更高的Lin(-)/CD41(++)/CD45(+)/AChE(+) MKs组成。与骨髓中的AChE(+) MKs相比,未成熟的Lin(-)/CD41(+)/CD45(+)/AChE(-) MKs是主要的MK群体,并且在体内PLT快速恢复中起重要作用。

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