Cardiac progenitor cell-derived exosomes prevent cardiomyocytes apoptosis through exosomal miR-21 by targeting PDCD4

被引:0
作者
J Xiao
Y Pan
X H Li
X Y Yang
Y L Feng
H H Tan
L Jiang
J Feng
X Y Yu
机构
[1] School of Pharmaceutical Sciences,
[2] Southern Medical University,undefined
[3] Guangdong General Hospital,undefined
[4] Guangdong Academy of Medical Sciences,undefined
[5] School of Pharmaceutical Sciences,undefined
[6] Guangzhou Medical University,undefined
来源
Cell Death & Disease | 2016年 / 7卷
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摘要
Cardiac progenitor cells derived from adult heart have emerged as one of the most promising stem cell types for cardiac protection and repair. Exosomes are known to mediate cell–cell communication by transporting cell-derived proteins and nucleic acids, including various microRNAs (miRNAs). Here we investigated the cardiac progenitor cell (CPC)-derived exosomal miRNAs on protecting myocardium under oxidative stress. Sca1+CPCs-derived exosomes were purified from conditional medium, and identified by nanoparticle trafficking analysis (NTA), transmission electron microscopy and western blotting using CD63, CD9 and Alix as markers. Exosomes production was measured by NTA, the result showed that oxidative stress-induced CPCs secrete more exosomes compared with normal condition. Although six apoptosis-related miRNAs could be detected in two different treatment-derived exosomes, only miR-21 was significantly upregulated in oxidative stress-induced exosomes compared with normal exosomes. The same oxidative stress could cause low miR-21 and high cleaved caspase-3 expression in H9C2 cardiac cells. But the cleaved caspase-3 was significantly decreased when miR-21 was overexpressed by transfecting miR-21 mimic. Furthermore, miR-21 mimic or inhibitor transfection and luciferase activity assay confirmed that programmed cell death 4 (PDCD4) was a target gene of miR-21, and miR-21/PDCD4 axis has an important role in anti-apoptotic effect of H9C2 cell. Western blotting and Annexin V/PI results demonstrated that exosomes pre-treated H9C2 exhibited increased miR-21 whereas decreased PDCD4, and had more resistant potential to the apoptosis induced by the oxidative stress, compared with non-treated cells. These findings revealed that CPC-derived exosomal miR-21 had an inhibiting role in the apoptosis pathway through downregulating PDCD4. Restored miR-21/PDCD4 pathway using CPC-derived exosomes could protect myocardial cells against oxidative stress-related apoptosis. Therefore, exosomes could be used as a new therapeutic vehicle for ischemic cardiac disease.
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页码:e2277 / e2277
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[1]  
Lefer DJ(2000)Oxidative stress and cardiac disease Am J Med 109 315-323
[2]  
Granger DN(2003)Oxidative stress and heart disease: cardiac dysfunction, nutrition, and gene therapy Curr Hypertens Rep 5 215-220
[3]  
Cantor EJ(2010)Relative roles of direct regeneration versus paracrine effects of human cardiosphere-derived cells transplanted into infarcted mice Circ Res 106 971-980
[4]  
Mancini EV(2013)Cardiac progenitor-derived exosomes protect ischemic myocardium from acute ischemia/reperfusion injury Biochem Biophys Res Commun 431 566-571
[5]  
Seth R(2014)Extracellular vesicles from human cardiac progenitor cells inhibit cardiomyocyte apoptosis and improve cardiac function after myocardial infarction Cardiovasc Res 103 530-541
[6]  
Yao XH(2015)Identification of therapeutic covariant microRNA clusters in hypoxia-treated cardiac progenitor cell exosomes using systems biology Circ Res 116 255-263
[7]  
Netticadan T(2015)Exosomal microRNA clusters are important for the therapeutic effect of cardiac progenitor cells Circ Res 116 219-221
[8]  
Chimenti I(2012)Exosome-mediated shuttling of microRNA-29 regulates HIV Tat and morphine-mediated neuronal dysfunction Cell Death Dis 3 e381-357
[9]  
Smith RR(2013)Extracellular vesicles: biology and emerging therapeutic opportunities Nat Rev Drug Discov 12 347-256
[10]  
Li TS(2015)Extracellular vesicle long noncoding RNA as potential biomarkers of liver cancer Brief Funct Genomics 15 249-659