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Optimal H2O2 preconditioning to improve bone marrow mesenchymal stem cells' engraftment in wound healing.
Guo, Ling; Du, Juan; Yuan, Dan-Feng; Zhang, Ya; Zhang, Shu; Zhang, Hua-Cai; Mi, Jun-Wei; Ning, Ya-Lei; Chen, Min-Jia; Wen, Da-Lin; Sun, Jian-Hui; Liu, Di; Zeng, Ling; Zhang, Anqiang; Jiang, Jianxin; Huang, Hong.
Affiliation
  • Guo L; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Du J; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Yuan DF; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Zhang Y; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Zhang S; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Zhang HC; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Mi JW; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Ning YL; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Chen MJ; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Wen DL; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Sun JH; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Liu D; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Zeng L; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Zhang A; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Jiang J; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China.
  • Huang H; State Key Laboratory of Trauma, Burns and Combined Injury, Department of Surgical Research, Daping Hospital, Army Medical University, Chongqing, 400042, China. huanghongcq@126.com.
Stem Cell Res Ther ; 11(1): 434, 2020 10 08.
Article in En | MEDLINE | ID: mdl-33032649
BACKGROUND: The transplantation of bone marrow mesenchymal stem cells (BMSCs) is a promising therapeutic strategy for wound healing. However, the poor migration capacity and low survival rate of transplanted BMSCs in wounds weaken their potential application. OBJECTIVE: To identify the optimal protocol for BMSCs preconditioned with H2O2 and improve the therapeutic efficacy using H2O2-preconditioned BMSCs in wound healing. METHODS: Mouse BMSCs were exposed to various concentrations of H2O2, and the key cellular functional properties were assessed to determine the optimal precondition with H2O2. The H2O2-preconditioned BMSCs were transplanted into mice with full-thickness excisional wounds to evaluate their healing capacity and tissue engraftment. RESULTS: Treatment BMSCs with 50 µM H2O2 for 12 h could significantly enhance their proliferation, migration, and survival by maximizing the upregulation of cyclin D1, SDF-1, and its receptors CXCR4/7 expressions, and activating the PI3K/Akt/mTOR pathway, but inhibiting the expression of p16 and GSK-3ß. Meanwhile, oxidative stress-induced BMSC apoptosis was also significantly attenuated by the same protocol pretreatment with a decreased ratio of Bax/Bcl-2 and cleaved caspase-9/3 expression. Moreover, after the identification of the optimal protocol of H2O2 precondition in vitro, the migration and tissue engraftment of transfused BMSCs with H2O2 preconditioning were dramatically increased into the wound site as compared to the un-preconditioned BMSCs. The increased microvessel density and the speedy closure of the wounds were observed after the transfusion of H2O2-preconditioned BMSCs. CONCLUSIONS: The findings suggested that 50 µM H2O2 pretreated for 12 h is the optimal precondition for the transplantation of BMSCs, which gives a considerable insight that this protocol may be served as a promising candidate for improving the therapeutic potential of BMSCs for wound healing.
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Full text: 1 Database: MEDLINE Main subject: Mesenchymal Stem Cell Transplantation / Mesenchymal Stem Cells Type of study: Guideline / Prognostic_studies Limits: Animals Language: En Year: 2020 Type: Article

Full text: 1 Database: MEDLINE Main subject: Mesenchymal Stem Cell Transplantation / Mesenchymal Stem Cells Type of study: Guideline / Prognostic_studies Limits: Animals Language: En Year: 2020 Type: Article