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A Large-Scale Investigation of Hypoxia-Preconditioned Allogeneic Mesenchymal Stem Cells for Myocardial Repair in Nonhuman Primates: Paracrine Activity Without Remuscularization

RATIONALE: The effectiveness of transplanted bone marrow mesenchymal stem cells (MSCs) for cardiac repair has been limited; thus, strategies for optimizing stem-cell–based myocardial therapy are needed. OBJECTIVE: The present study was designed to test our central hypothesis that hypoxia-preconditio...

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Autores principales: Hu, Xinyang, Xu, Yinchuan, Zhong, Zhiwei, Wu, Yan, Zhao, Jing, Wang, Yingchao, Cheng, Haifeng, Kong, Minjian, Zhang, Fengjiang, Chen, Qi, Sun, Jianzhong, Li, Qian, Jin, Jing, Li, Qingju, Chen, Lihong, Wang, Chen, Zhan, Hongwei, Fan, Youqi, Yang, Qian, Yu, Lei, Wu, Rongrong, Liang, Jie, Zhu, Jinyun, Wang, Ya, Jin, Yiping, Lin, Yifan, Yang, Fan, Jia, Liangliang, Zhu, Wei, Chen, Jinghai, Yu, Hong, Zhang, Jianyi, Wang, Jian’an
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Lippincott Williams & Wilkins 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4894788/
https://www.ncbi.nlm.nih.gov/pubmed/26838793
http://dx.doi.org/10.1161/CIRCRESAHA.115.307516
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author Hu, Xinyang
Xu, Yinchuan
Zhong, Zhiwei
Wu, Yan
Zhao, Jing
Wang, Yingchao
Cheng, Haifeng
Kong, Minjian
Zhang, Fengjiang
Chen, Qi
Sun, Jianzhong
Li, Qian
Jin, Jing
Li, Qingju
Chen, Lihong
Wang, Chen
Zhan, Hongwei
Fan, Youqi
Yang, Qian
Yu, Lei
Wu, Rongrong
Liang, Jie
Zhu, Jinyun
Wang, Ya
Jin, Yiping
Lin, Yifan
Yang, Fan
Jia, Liangliang
Zhu, Wei
Chen, Jinghai
Yu, Hong
Zhang, Jianyi
Wang, Jian’an
author_facet Hu, Xinyang
Xu, Yinchuan
Zhong, Zhiwei
Wu, Yan
Zhao, Jing
Wang, Yingchao
Cheng, Haifeng
Kong, Minjian
Zhang, Fengjiang
Chen, Qi
Sun, Jianzhong
Li, Qian
Jin, Jing
Li, Qingju
Chen, Lihong
Wang, Chen
Zhan, Hongwei
Fan, Youqi
Yang, Qian
Yu, Lei
Wu, Rongrong
Liang, Jie
Zhu, Jinyun
Wang, Ya
Jin, Yiping
Lin, Yifan
Yang, Fan
Jia, Liangliang
Zhu, Wei
Chen, Jinghai
Yu, Hong
Zhang, Jianyi
Wang, Jian’an
author_sort Hu, Xinyang
collection PubMed
description RATIONALE: The effectiveness of transplanted bone marrow mesenchymal stem cells (MSCs) for cardiac repair has been limited; thus, strategies for optimizing stem-cell–based myocardial therapy are needed. OBJECTIVE: The present study was designed to test our central hypothesis that hypoxia-preconditioned MSCs (HP-MSCs) are more effective than MSCs cultured under ambient oxygen levels for the treatment of myocardial injury in a large-scale (N=49), long-term (9 months), nonhuman primate (Cynomolgous monkeys) investigation. METHODS AND RESULTS: MSCs were engineered to express green fluorescent protein, cultured under ambient oxygen or 0.5% oxygen (HP-MSCs) for 24 hours and then tested in the infarcted hearts of Cynomolgus monkeys (1×10(7) cells per heart). Hypoxia preconditioning increased the expression of several prosurvival/proangiogenic factors in cultured MSCs, and measurements of infarct size and left-ventricular function at day 90 after myocardial infarction were significantly more improved in monkeys treated with HP-MSCs than in monkeys treated with the control vehicle; functional improvements in normal cultured bone marrow mesenchymal stem cells–treated monkeys were not significant. HP-MSCs transplantation was also associated with increases in cardiomyocyte proliferation, vascular density, myocardial glucose uptake, and engraftment of the transplanted cells and with declines in endogenous cell apoptosis, but did not increase the occurrence of arrhythmogenic complications. CONCLUSIONS: Hypoxia preconditioning improved the effectiveness of MSCs transplantation for the treatment of myocardial infarction in nonhuman primates without increasing the occurrence of arrhythmogenic complications, which suggests that future clinical trials of HP-MSCs transplantation are warranted.
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spelling pubmed-48947882016-06-21 A Large-Scale Investigation of Hypoxia-Preconditioned Allogeneic Mesenchymal Stem Cells for Myocardial Repair in Nonhuman Primates: Paracrine Activity Without Remuscularization Hu, Xinyang Xu, Yinchuan Zhong, Zhiwei Wu, Yan Zhao, Jing Wang, Yingchao Cheng, Haifeng Kong, Minjian Zhang, Fengjiang Chen, Qi Sun, Jianzhong Li, Qian Jin, Jing Li, Qingju Chen, Lihong Wang, Chen Zhan, Hongwei Fan, Youqi Yang, Qian Yu, Lei Wu, Rongrong Liang, Jie Zhu, Jinyun Wang, Ya Jin, Yiping Lin, Yifan Yang, Fan Jia, Liangliang Zhu, Wei Chen, Jinghai Yu, Hong Zhang, Jianyi Wang, Jian’an Circ Res Integrative Physiology RATIONALE: The effectiveness of transplanted bone marrow mesenchymal stem cells (MSCs) for cardiac repair has been limited; thus, strategies for optimizing stem-cell–based myocardial therapy are needed. OBJECTIVE: The present study was designed to test our central hypothesis that hypoxia-preconditioned MSCs (HP-MSCs) are more effective than MSCs cultured under ambient oxygen levels for the treatment of myocardial injury in a large-scale (N=49), long-term (9 months), nonhuman primate (Cynomolgous monkeys) investigation. METHODS AND RESULTS: MSCs were engineered to express green fluorescent protein, cultured under ambient oxygen or 0.5% oxygen (HP-MSCs) for 24 hours and then tested in the infarcted hearts of Cynomolgus monkeys (1×10(7) cells per heart). Hypoxia preconditioning increased the expression of several prosurvival/proangiogenic factors in cultured MSCs, and measurements of infarct size and left-ventricular function at day 90 after myocardial infarction were significantly more improved in monkeys treated with HP-MSCs than in monkeys treated with the control vehicle; functional improvements in normal cultured bone marrow mesenchymal stem cells–treated monkeys were not significant. HP-MSCs transplantation was also associated with increases in cardiomyocyte proliferation, vascular density, myocardial glucose uptake, and engraftment of the transplanted cells and with declines in endogenous cell apoptosis, but did not increase the occurrence of arrhythmogenic complications. CONCLUSIONS: Hypoxia preconditioning improved the effectiveness of MSCs transplantation for the treatment of myocardial infarction in nonhuman primates without increasing the occurrence of arrhythmogenic complications, which suggests that future clinical trials of HP-MSCs transplantation are warranted. Lippincott Williams & Wilkins 2016-03-18 2016-03-17 /pmc/articles/PMC4894788/ /pubmed/26838793 http://dx.doi.org/10.1161/CIRCRESAHA.115.307516 Text en © 2016 The Authors. Circulation Research is published on behalf of the American Heart Association, Inc., by Wolters Kluwer. This is an open access article under the terms of the Creative Commons Attribution Non-Commercial-NoDervis (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use, distribution, and reproduction in any medium, provided that the original work is properly cited, the use is noncommercial, and no modifications or adaptations are made.
spellingShingle Integrative Physiology
Hu, Xinyang
Xu, Yinchuan
Zhong, Zhiwei
Wu, Yan
Zhao, Jing
Wang, Yingchao
Cheng, Haifeng
Kong, Minjian
Zhang, Fengjiang
Chen, Qi
Sun, Jianzhong
Li, Qian
Jin, Jing
Li, Qingju
Chen, Lihong
Wang, Chen
Zhan, Hongwei
Fan, Youqi
Yang, Qian
Yu, Lei
Wu, Rongrong
Liang, Jie
Zhu, Jinyun
Wang, Ya
Jin, Yiping
Lin, Yifan
Yang, Fan
Jia, Liangliang
Zhu, Wei
Chen, Jinghai
Yu, Hong
Zhang, Jianyi
Wang, Jian’an
A Large-Scale Investigation of Hypoxia-Preconditioned Allogeneic Mesenchymal Stem Cells for Myocardial Repair in Nonhuman Primates: Paracrine Activity Without Remuscularization
title A Large-Scale Investigation of Hypoxia-Preconditioned Allogeneic Mesenchymal Stem Cells for Myocardial Repair in Nonhuman Primates: Paracrine Activity Without Remuscularization
title_full A Large-Scale Investigation of Hypoxia-Preconditioned Allogeneic Mesenchymal Stem Cells for Myocardial Repair in Nonhuman Primates: Paracrine Activity Without Remuscularization
title_fullStr A Large-Scale Investigation of Hypoxia-Preconditioned Allogeneic Mesenchymal Stem Cells for Myocardial Repair in Nonhuman Primates: Paracrine Activity Without Remuscularization
title_full_unstemmed A Large-Scale Investigation of Hypoxia-Preconditioned Allogeneic Mesenchymal Stem Cells for Myocardial Repair in Nonhuman Primates: Paracrine Activity Without Remuscularization
title_short A Large-Scale Investigation of Hypoxia-Preconditioned Allogeneic Mesenchymal Stem Cells for Myocardial Repair in Nonhuman Primates: Paracrine Activity Without Remuscularization
title_sort large-scale investigation of hypoxia-preconditioned allogeneic mesenchymal stem cells for myocardial repair in nonhuman primates: paracrine activity without remuscularization
topic Integrative Physiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4894788/
https://www.ncbi.nlm.nih.gov/pubmed/26838793
http://dx.doi.org/10.1161/CIRCRESAHA.115.307516
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