miR-132-3p priming enhances the effects of mesenchymal stromal cell-derived exosomes on ameliorating brain ischemic injury

被引:96
|
作者
Pan, Qunwen [1 ]
Kuang, Xiaoli [1 ]
Cai, Shuyun [2 ]
Wang, Xiang [1 ]
Du, Donghui [1 ]
Wang, Jinju [3 ]
Wang, Yan [1 ]
Chen, Yanyu [1 ]
Bihl, Ji [3 ]
Chen, Yanfang [3 ]
Zhao, Bin [1 ]
Ma, Xiaotang [1 ]
机构
[1] Guangdong Med Univ, Affiliated Hosp, Inst Neurol, Guangdong Key Lab Age Related Cardiac & Cerebral, Zhanjiang 524001, Peoples R China
[2] Guangdong Med Univ, Affiliated Hosp, Dept Anesthesiol, Zhanjiang 524001, Peoples R China
[3] Wright State Univ, Boonshoft Sch Med, Dept Pharmacol & Toxicol, Dayton, OH 45435 USA
基金
中国国家自然科学基金;
关键词
Mesenchymal stromal cells; Exosome; miR-132-3p; Ischemia and reperfusion; Apoptosis; ROS production; ENDOTHELIAL PROGENITOR CELLS; STEM-CELLS; FUNCTIONAL RECOVERY; MEDIATED TRANSFER; OXIDATIVE STRESS; MICRORNA; STROKE; CONTRIBUTES; DYSFUNCTION; PLASTICITY;
D O I
10.1186/s13287-020-01761-0
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Backgrounds/aims Mesenchymal stromal cell-derived exosomes (MSC-EXs) could exert protective effects on recipient cells by transferring the contained microRNAs (miRs), and miR-132-3p is one of angiogenic miRs. However, whether the combination of MSC-EXs and miR-132-3p has better effects in ischemic cerebrovascular disease remains unknown. Methods Mouse MSCs transfected with scrambler control or miR-132-3p mimics were used to generate MSC-EXs and miR-132-3p-overexpressed MSC-EXs (MSC-EXs(miR-132-3p)). The effects of EXs on hypoxia/reoxygenation (H/R)-injured ECs in ROS generation, apoptosis, and barrier function were analyzed. The levels of RASA1, Ras, phosphorylations of PI3K, Akt and endothelial nitric oxide synthesis (eNOS), and tight junction proteins (Claudin-5 and ZO-1) were measured. Ras and PI3K inhibitors were used for pathway analysis. In transient middle cerebral artery occlusion (tMCAO) mouse model, the effects of MSC-EXs on the cerebral vascular ROS production and apoptosis, cerebral vascular density (cMVD), Evans blue extravasation, brain water content, neurological deficit score (NDS), and infarct volume were determined. Results MSC-EXs could deliver their carried miR-132-3p into target ECs, which functionally downregulated the target protein RASA1, while upregulated the expression of Ras and the downstream PI3K phosphorylation. Compared to MSC-EXs, MSC-EXs(miR-132-3p)were more effective in decreasing ROS production, apoptosis, and tight junction disruption in H/R-injured ECs. These effects were associated with increased levels of phosphorylated Akt and eNOS, which could be abolished by PI3K inhibitor (LY294002) or Ras inhibitor (NSC 23766). In the tMCAO mouse model, the infusion of MSC-EXs(miR-132-3p)was more effective than MSC-EXs in reducing cerebral vascular ROS production, BBB dysfunction, and brain injury. Conclusion Our results suggest that miR-132-3p promotes the beneficial effects of MSC-EXs on brain ischemic injury through protecting cerebral EC functions.
引用
收藏
页数:17
相关论文
共 50 条
  • [1] miR-132-3p priming enhances the effects of mesenchymal stromal cell-derived exosomes on ameliorating brain ischemic injury
    Qunwen Pan
    Xiaoli Kuang
    Shuyun Cai
    Xiang Wang
    Donghui Du
    Jinju Wang
    Yan Wang
    Yanyu Chen
    Ji Bihl
    Yanfang Chen
    Bin Zhao
    Xiaotang Ma
    [J]. Stem Cell Research & Therapy, 11
  • [2] Protective Effect of Mesenchymal Stromal Cell-Derived Exosomes on Traumatic Brain Injury via miR-216a-5p
    Xu, Huiyou
    Jia, Zhilong
    Ma, Ke
    Zhang, Jian
    Dai, Chen
    Yao, Zitong
    Deng, Wusheng
    Su, Jianzhong
    Wang, Renjie
    Chen, Xuyi
    [J]. MEDICAL SCIENCE MONITOR, 2020, 26
  • [3] IFN-γ enhances the efficacy of mesenchymal stromal cell-derived exosomes via miR-21 in myocardial infarction rats
    Jian Zhang
    Yao Lu
    Yangming Mao
    Yue Yu
    Tianyu Wu
    Wei Zhao
    Yeqian Zhu
    Pengcheng Zhao
    Fengxiang Zhang
    [J]. Stem Cell Research & Therapy, 13
  • [4] IFN-γ enhances the efficacy of mesenchymal stromal cell-derived exosomes via miR-21 in myocardial infarction rats
    Zhang, Jian
    Lu, Yao
    Mao, Yangming
    Yu, Yue
    Wu, Tianyu
    Zhao, Wei
    Zhu, Yeqian
    Zhao, Pengcheng
    Zhang, Fengxiang
    [J]. STEM CELL RESEARCH & THERAPY, 2022, 13 (01)
  • [5] MiR-17-5p Mediates the Effects of ACE2-Enriched Endothelial Progenitor Cell-Derived Exosomes on Ameliorating Cerebral Ischemic Injury in Aged Mice
    Pan, Qunwen
    Wang, Yan
    Liu, Jinhua
    Jin, Xiaojuan
    Xiang, Zhi
    Li, Suqing
    Shi, Yumeng
    Chen, Yanfang
    Zhong, Wangtao
    Ma, Xiaotang
    [J]. MOLECULAR NEUROBIOLOGY, 2023, 60 (06) : 3534 - 3552
  • [6] MiR-17-5p Mediates the Effects of ACE2-Enriched Endothelial Progenitor Cell-Derived Exosomes on Ameliorating Cerebral Ischemic Injury in Aged Mice
    Qunwen Pan
    Yan Wang
    Jinhua Liu
    Xiaojuan Jin
    Zhi Xiang
    Suqing Li
    Yumeng Shi
    Yanfang Chen
    Wangtao Zhong
    Xiaotang Ma
    [J]. Molecular Neurobiology, 2023, 60 : 3534 - 3552
  • [7] Mechanism of ischemic brain injury repair by endothelial progenitor cell-derived exosomes
    Huang, Rui
    Cheng, Tianxiang
    Lai, Xianliang
    [J]. MOLECULAR MEDICINE REPORTS, 2022, 26 (02)
  • [8] Exosomal miR-132-3p from mesenchymal stromal cells improves synaptic dysfunction and cognitive decline in vascular dementia
    Ma, Xiaotang
    Wang, Yan
    Shi, Yumeng
    Li, Suqing
    Liu, Jinhua
    Li, Xiangyong
    Zhong, Wangtao
    Pan, Qunwen
    [J]. STEM CELL RESEARCH & THERAPY, 2022, 13 (01)
  • [9] Exosomal miR-132-3p from mesenchymal stromal cells improves synaptic dysfunction and cognitive decline in vascular dementia
    Xiaotang Ma
    Yan Wang
    Yumeng Shi
    Suqing Li
    Jinhua Liu
    Xiangyong Li
    Wangtao Zhong
    Qunwen Pan
    [J]. Stem Cell Research & Therapy, 13
  • [10] LncRNA TUG1 mediates ischemic myocardial injury by targeting miR-132-3p/HDAC3 axis
    Su, Qiang
    Liu, Yang
    Lv, Xiang-Wei
    Dai, Ri-Xin
    Yang, Xi-Heng
    Kong, Bing-Hui
    [J]. AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2020, 318 (02): : H332 - H344