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Publication : Manipulating niche composition limits damage to haematopoietic stem cells during Plasmodium infection.

First Author  Haltalli MLR Year  2020
Journal  Nat Cell Biol Volume  22
Issue  12 Pages  1399-1410
PubMed ID  33230302 Mgi Jnum  J:310114
Mgi Id  MGI:6709599 Doi  10.1038/s41556-020-00601-w
Citation  Haltalli MLR, et al. (2020) Manipulating niche composition limits damage to haematopoietic stem cells during Plasmodium infection. Nat Cell Biol 22(12):1399-1410
abstractText  Severe infections are a major stress on haematopoiesis, where the consequences for haematopoietic stem cells (HSCs) have only recently started to emerge. HSC function critically depends on the integrity of complex bone marrow (BM) niches; however, what role the BM microenvironment plays in mediating the effects of infection on HSCs remains an open question. Here, using a murine model of malaria and combining single-cell RNA sequencing, mathematical modelling, transplantation assays and intravital microscopy, we show that haematopoiesis is reprogrammed upon infection, whereby the HSC compartment turns over substantially faster than at steady-state and HSC function is drastically affected. Interferon is found to affect both haematopoietic and mesenchymal BM cells and we specifically identify a dramatic loss of osteoblasts and alterations in endothelial cell function. Osteo-active parathyroid hormone treatment abolishes infection-triggered HSC proliferation and-coupled with reactive oxygen species quenching-enables partial rescuing of HSC function.
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