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利用因子V摄取鉴定和富集血小板生成的人干细胞来源的巨核细胞。

Identifying and enriching platelet-producing human stem cell-derived megakaryocytes using factor V uptake.

作者信息

Sim Xiuli, Jarocha Danuta, Hayes Vincent, Hanby Hayley A, Marks Michael S, Camire Rodney M, French Deborah L, Poncz Mortimer, Gadue Paul

机构信息

Department of Cell and Molecular Biology, University of Pennsylvania School of Medicine, Philadelphia, PA.

Center for Cellular and Molecular Therapeutics, Children's Hospital of Philadelphia, Philadelphia, PA.

出版信息

Blood. 2017 Jul 13;130(2):192-204. doi: 10.1182/blood-2017-01-761049. Epub 2017 Apr 28.

Abstract

Stem cell-derived platelets have the potential to replace donor platelets for transfusion. Defining the platelet-producing megakaryocytes (MKs) within the heterogeneous MK culture may help to optimize the in vitro generation of platelets. Using 2 human stem cell models of megakaryopoiesis, we identified novel MK populations corresponding to distinct maturation stages. An immature, low granular (LG) MK pool (defined by side scatter on flow cytometry) gives rise to a mature high granular (HG) pool, which then becomes damaged by apoptosis and glycoprotein Ib α chain (CD42b) shedding. We define an undamaged HG/CD42b MK subpopulation, which endocytoses fluorescently labeled coagulation factor V (FV) from the media into α-granules and releases functional FVCD42b human platelet-like particles in vitro and when infused into immunodeficient mice. Importantly, these FV particles have the same size distribution as infused human donor platelets and are preferentially incorporated into clots after laser injury. Using drugs to protect HG MKs from apoptosis and CD42b shedding, we also demonstrate that apoptosis precedes CD42b shedding and that apoptosis inhibition enriches the FV HG/CD42b MKs, leading to increased platelet yield in vivo, but not in vitro. These studies identify a transition between distinct MK populations in vitro, including one that is primed for platelet release. Technologies to optimize and select these platelet-ready MKs may be important to efficiently generate functional platelets from in vitro-grown MKs.

摘要

干细胞衍生的血小板有潜力替代供体血小板用于输血。确定异质性巨核细胞(MK)培养物中产生血小板的巨核细胞可能有助于优化血小板的体外生成。利用2种人类巨核细胞生成的干细胞模型,我们鉴定出了对应不同成熟阶段的新型MK群体。一个不成熟的低颗粒度(LG)MK池(通过流式细胞术侧向散射定义)产生一个成熟的高颗粒度(HG)池,随后该HG池会因凋亡和糖蛋白Ibα链(CD42b)脱落而受损。我们定义了一个未受损的HG/CD42b MK亚群,其能将培养基中荧光标记的凝血因子V(FV)内吞到α颗粒中,并在体外以及注入免疫缺陷小鼠体内时释放出具有功能的FVCD42b人血小板样颗粒。重要的是,这些FV颗粒具有与注入的人类供体血小板相同的大小分布,并且在激光损伤后优先整合到凝块中。使用药物保护HG MK免受凋亡和CD42b脱落的影响,我们还证明凋亡先于CD42b脱落,并且凋亡抑制会富集FV HG/CD42b MK,从而导致体内血小板产量增加,但体外产量未增加。这些研究确定了体外不同MK群体之间的转变,包括一个准备好释放血小板的群体。优化和选择这些准备好生成血小板的MK的技术对于从体外培养的MK高效生成功能性血小板可能很重要。

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