Extracellular release of damaged mitochondria induced by cytotoxic conditioning exacerbates GVHD
Vijayan, V.; Yan, H.; Lohmeyer, J. K.; Prentiss, K. A.; Patil, R. V.; Barbarito, G.; Lopez, I.; Elezaby, A.; Peterson, K.; Baker, J.; Ostberg, N. P.; Bertaina, A.; Negrin, R. S.; Mochly-Rosen, D.; Weinberg, K.; Haileselassie, B.
Show abstract
Despite therapeutic advancements, GVHD is a major complication of HSCT. In current models of GVHD, tissue injury induced by cytotoxic conditioning regimens, along with translocation of microbes expressing Pathogen Associated Molecular Patterns (PAMPs), result in activation of host antigen-presenting cells (APC) to stimulate alloreactive donor T lymphocytes. Recent studies have demonstrated that in many pathologic states, tissue injury results in the release of mitochondria from the cytoplasm to the extracellular space. We hypothesized that extracellular mitochondria, which are related to archaebacteria, could also trigger GVHD by stimulation of host APC. We found that clinically relevant doses of radiation or busulfan induced extracellular release of mitochondria by various cell types, including cultured intestinal epithelial cells. Conditioning-mediated mitochondrial release was associated with mitochondrial damage and impaired quality control but did not affect the viability of the cells. Extracellular mitochondria directly stimulated host APCs to express higher levels of MHC-II, co-stimulatory CD86, and pro-inflammatory cytokines, resulting in increased donor T cell activation, and proliferation in mixed lymphocyte reactions. Analyses of plasma from both experimental mice and a cohort of children undergoing HSCT demonstrated that conditioning induced extracellular mitochondrial release in vivo. In mice undergoing MHC mismatched HSCT, administration of purified syngeneic extracellular mitochondria increased host APC activation and exacerbated GVHD. Our data suggests that pre-HSCT conditioning results in extracellular release of damaged mitochondria which increase alloreactivity and exacerbate GVHD. Therefore, decreasing the extracellular release of damaged mitochondria following conditioning could serve as a novel strategy for GVHD prevention.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Human Interleukin-4-Dependent Facilitation of Human IgG Production in PBL-NOG-hIL-4-Tg mice 94%
- Hemoglobin alpha regulates T-lymphocyte activation and mitochondrial function 93%
- Dental biofilm microbiota dysbiosis is associated with the risk of acute graft-versus-host disease after allogeneic hematopoietic stem cell transplantation 93%
Similar papers in this journal
Similar papers in this journal
- Inflammatory signals from fatty bone marrow supports the early stages of DNMT3a driven clonal hematopoiesis 96%
- A Type 2 Innate Lymphoid Cell-Interleukin 9 Circuit Induces Paneth Cell Metaplasia And Small Intestinal Remodeling 95%
- Embryonic Vitamin D Deficiency Programs Hematopoietic Stem Cells to Induce Type 2 Diabetes 92%
Similar papers in this journal
- Human MAIT cells are devoid of alloreactive potential: prompting their use as universal cells for adoptive immune therapy 96%
- CD155 blockade enhances allogeneic natural killer cell-mediated antitumor response against osteosarcoma 95%
- Distinct host preconditioning regimens differentially impact the antitumor potency of adoptively transferred Th17 cells. 94%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.