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A specialized bone marrow microenvironment for fetal haematopoiesis.


ABSTRACT: In adult mammalian bone marrow (BM), vascular endothelial cells and perivascular reticular cells control the function of haematopoietic stem and progenitor cells (HSPCs). During fetal development, the mechanisms regulating the de novo haematopoietic cell colonization of BM remain largely unknown. Here, we show that fetal and adult BM exhibit fundamental differences in cellular composition and molecular interactions by single cell RNA sequencing. While fetal femur is largely devoid of leptin receptor-expressing cells, arterial endothelial cells (AECs) provide Wnt ligand to control the initial HSPC expansion. Haematopoietic stem cells and c-Kit+ HSPCs are reduced when Wnt secretion by AECs is genetically blocked. We identify Wnt2 as AEC-derived signal that activates β-catenin-dependent proliferation of fetal HSPCs. Treatment of HSPCs with Wnt2 promotes their proliferation and improves engraftment after transplantation. Our work reveals a fundamental switch in the cellular organization and molecular regulation of BM niches in the embryonic and adult organism.

SUBMITTER: Liu Y 

PROVIDER: S-EPMC8921288 | biostudies-literature | 2022 Mar

REPOSITORIES: biostudies-literature

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A specialized bone marrow microenvironment for fetal haematopoiesis.

Liu Yang Y   Chen Qi Q   Jeong Hyun-Woo HW   Koh Bong Ihn BI   Watson Emma C EC   Xu Cong C   Stehling Martin M   Zhou Bin B   Adams Ralf H RH  

Nature communications 20220314 1


In adult mammalian bone marrow (BM), vascular endothelial cells and perivascular reticular cells control the function of haematopoietic stem and progenitor cells (HSPCs). During fetal development, the mechanisms regulating the de novo haematopoietic cell colonization of BM remain largely unknown. Here, we show that fetal and adult BM exhibit fundamental differences in cellular composition and molecular interactions by single cell RNA sequencing. While fetal femur is largely devoid of leptin rece  ...[more]

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