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Publication : The microbiota regulates hematopoietic stem cell fate decisions by controlling iron availability in bone marrow.

First Author  Zhang D Year  2022
Journal  Cell Stem Cell Volume  29
Issue  2 Pages  232-247.e7
PubMed ID  35065706 Mgi Jnum  J:336499
Mgi Id  MGI:6874753 Doi  10.1016/j.stem.2021.12.009
Citation  Zhang D, et al. (2022) The microbiota regulates hematopoietic stem cell fate decisions by controlling iron availability in bone marrow. Cell Stem Cell 29(2):232-247.e7
abstractText  Host microbiota crosstalk is essential for the production and functional modulation of blood-cell lineages. Whether, and if so how, the microbiota influences hematopoietic stem cells (HSCs) is unclear. Here, we show that the microbiota regulates HSC self-renewal and differentiation under stress conditions by modulating local iron availability in the bone marrow (BM). In microbiota-depleted mice, HSC self-renewal was enhanced during regeneration, while the commitment toward differentiation was dramatically compromised. Mechanistically, microbiota depletion selectively impaired the recycling of red blood cells (RBCs) by BM macrophages, resulting in reduced local iron levels without affecting systemic iron homeostasis. Limiting iron availability in food (in vivo) or in culture (ex vivo), or by CD169(+) macrophage depletion, enhanced HSC self-renewal and expansion. These results reveal an intricate interplay between the microbiota, macrophages, and iron, and their essential roles in regulating critical HSC fate decisions under stress.
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