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胚胎内 VE-钙黏蛋白+细胞来源的造血干细胞非依赖性肥大细胞分化。

Hematopoietic Stem Cell-Independent Differentiation of Mast Cells From Mouse Intraembryonic VE-Cadherin+ Cells.

机构信息

Department of Cell Differentiation, Institute of Molecular Embryology and Genetics, Kumamoto University, Kumamoto, Japan.

出版信息

Stem Cells. 2022 Mar 31;40(3):332-345. doi: 10.1093/stmcls/sxac001.

Abstract

Hematopoietic stem cell (HSC)-independent hematopoiesis from hemogenic endothelial cells (HECs) in the mouse embryo has been recognized as a source of tissue-resident hematopoietic cells in adult mice. Connective tissue mast cells (MCs) have been reported to originate from VE-cadherin (VE-cad)-expressing HECs in the yolk sac and embryo proper (EP) by a VE-cad-Cre-mediated lineage-tracing analysis. However, it remains unclear whether MCs are generated via a conventional HSC-dependent hematopoietic differentiation pathway, or whether through a fast-track pathway bypassing the emergence of HSCs. Here, we investigated whether EP-derived VE-cad+ cells differentiate into MCs independently of HSCs. VE-cad+ cells isolated from the embryonic day (E) 9.5-10.5 EP robustly formed connective tissue-type MCs in a newly established co-culture system using PA6 stromal cells. In contrast, bone marrow (BM) reconstitution assays of cultured cells indicated that E9.5 VE-cad+ cells did not differentiate into transplantable HSCs in this culture condition. Lymphoid-biased HSCs with a limited self-renewal capacity were occasionally detected in some cultures of E10.5 VE-cad+ cells, while MC growth was constantly observed in all cultures examined. HSCs purified from adult BM required a more extended culture period to form MCs in the PA6 co-culture than the embryonic VE-cad+ cells. Furthermore, E9.5-E10.5 VE-cad+ cells contributed to tissue-resident MCs in postnatal mice when transplanted into the peritoneal cavity of newborn mice. These results suggest that EP-derived VE-cad+ cells generate MCs independently of HSC development in vitro and possess the potential of generating connective tissue MCs in vivo, although the exact differentiation program remains unsolved.

摘要

造血干细胞(HSC)独立于造血内皮细胞(HEC)的造血作用在小鼠胚胎中已被认为是成年小鼠组织驻留造血细胞的来源。已有报道称,通过 VE-cad-Cre 介导的谱系追踪分析,结缔组织肥大细胞(MCs)起源于卵黄囊和胚胎本身(EP)中表达 VE-钙黏蛋白(VE-cad)的 HEC。然而,尚不清楚 MC 是否通过常规的 HSC 依赖性造血分化途径产生,或者是否通过绕过 HSC 出现的快速通道产生。在这里,我们研究了 EP 衍生的 VE-cad+细胞是否独立于 HSCs 分化为 MC。从胚胎第 9.5-10.5 天(E)的 EP 中分离的 VE-cad+细胞在新建立的使用 PA6 基质细胞的共培养系统中可强烈形成结缔组织型 MC。相比之下,培养细胞的骨髓(BM)重建实验表明,在这种培养条件下,E9.5 VE-cad+细胞不会分化为可移植的 HSCs。在某些 E10.5 VE-cad+细胞的培养物中偶尔会检测到具有有限自我更新能力的淋巴样偏向性 HSCs,而在所有检查的培养物中均观察到 MC 生长。从成年 BM 中纯化的 HSCs 在与 PA6 共培养形成 MC 方面比胚胎 VE-cad+细胞需要更长的培养期。此外,当将 E9.5-E10.5 VE-cad+细胞移植到新生小鼠的腹腔中时,它们可以为新生小鼠的组织驻留 MC 做出贡献。这些结果表明,EP 衍生的 VE-cad+细胞在体外独立于 HSC 发育产生 MC,并具有在体内产生结缔组织 MC 的潜力,尽管确切的分化程序仍未解决。

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