Endothelium-derived stromal cells contribute to hematopoietic bone marrow niche formation.

Kenswil, Keane Jared Guillaume; Pisterzi, Paola; Sánchez-Duffhues, Gonzalo; van Dijk, Claire; Lolli, Andrea; Knuth, Callie; Vanchin, Byambasuren; Jaramillo, Adrian Christopher et al. · Cell Stem Cell · 2021

basic_science · Level V

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Abstract

Bone marrow stromal cells (BMSCs) play pivotal roles in tissue maintenance and regeneration. Their origins, however, remain incompletely understood. Here we identify rare LNGFR<sup>+</sup> cells in human fetal and regenerative bone marrow that co-express endothelial and stromal markers. This endothelial subpopulation displays transcriptional reprogramming consistent with endothelial-to-mesenchymal transition (EndoMT) and can generate multipotent stromal cells that reconstitute the bone marrow (BM) niche upon transplantation. Single-cell transcriptomics and lineage tracing in mice confirm robust and sustained contributions of EndoMT to bone precursor and hematopoietic niche pools. Interleukin-33 (IL-33) is overexpressed in subsets of EndoMT cells and drives this conversion process through ST2 receptor signaling. These data reveal generation of tissue-forming BMSCs from mouse and human endothelial cells and may be instructive for approaches to human tissue regeneration.

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