Orchestration of human multi-lineage hematopoietic cell development by humanized in vivo bone marrow models.

利用人源化体内骨髓模型调控人类多系造血细胞发育

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作者:Renou Laurent, Sun Wenjie, Friedrich Chloe, Galant Klaudia, Conrad Cecile, Consalus Anne, Plantier Evelia, Schallmoser Katharina, Krisch Linda, Barroca Vilma, Devanand Saryami, Dechamps Nathalie, Reinisch Andreas, Martinovic Jelena, Magnani Alessandra, Faivre Lionel, Lewandowski Daniel, Calvo Julien, Perie Leila, Kosmider Olivier, Pflumio Françoise
Hematopoiesis develops in the bone marrow (BM) where multiple interactions regulate the differentiation and preservation of hematopoietic stem and progenitor cells (HSPCs). Immune-deficient murine models have enabled the analysis of molecular and cellular regulation of human HSPCs, but the physiology of these models is questioned as human hematopoietic cells develop in xenogenic microenvironments. In this study, we thoroughly characterized a humanized (h) in vivo BM model, developed from fetal (F/) and post-natal (P-N/) mesenchymal stromal cell (MSC) differentiation (called hOssicles [hOss]), in which human hematopoietic cells are generated following the transplantation of CD34(+) cells. Serial isolation and transplant experiments of hMSCs and HSPCs from hOss revealed the dynamic nature of these hBM niches. hOss modified human hematopoietic development by modulating myeloid/lymphoid cell production and HSPC levels, with no major transcriptional changes in HSPCs at the single-cell level. Clonal tracking using genetic barcodes highlighted hematopoietic cell cross-talks between the endogenous murine BM and hOss and differences in clonal myeloid/multipotent cell production between F/hOss and P-N/hOss, uncovering ontogeny-related impact of the BM on human hematopoietic cell production.

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