Murine Bone Marrow Mesenchymal Stromal Cells Respond Efficiently to Oxidative Stress Despite the Low Level of Heme Oxygenases 1 and 2 — Witold N. Nowak (2017) | RDL Network
Murine Bone Marrow Mesenchymal Stromal Cells Respond Efficiently to Oxidative Stress Despite the Low Level of Heme Oxygenases 1 and 2
Article 2017 en
Authors
WN
Witold N. Nowak
HT
Hevidar Taha
NK
Neli Kachamakova‐Trojanowska
Abstract
1 min read
Both MSC Hmox1<sup>+/+</sup> and Hmox1<sup>-/-</sup> showed similar phenotype, differentiation capacities, and production of cytokines or growth factors. Hmox1<sup>+/+</sup> and Hmox1<sup>-/-</sup> cells showed similar survival in response to 50 μmol/L hemin even in increased glucose concentration, conditions that were unfavorable for Hmox1<sup>-/-</sup> bone marrow-derived proangiogenic cells (BDMC). Hmox1<sup>+/+</sup> MSCs but not fibroblasts retained low ROS levels even after prolonged incubation with 50 μmol/L hemin, although both cell types have a comparable Hmox1 expression and similarly increase its levels in response to hemin. MSCs Hmox1<sup>-/-</sup> treated with hemin efficiently induced expression of a vast panel of antioxidant genes, especially enzymes of the glutathione pathway. Innovation and Conclusion: Hmox1 overexpression is a popular strategy to enhance viability and performance of MSCs after the transplantation. However, murine MSCs Hmox1<sup>-/-</sup> do not differ from wild-type MSCs in phenotype and functions. MSC Hmox1<sup>-/-</sup> show better resistance to hemin than fibroblasts and BDMCs and rapidly react to the stress by upregulation of quintessential genes in antioxidant response. Antioxid. Redox Signal. 00, 000-000.
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