Lipopolysaccharides protect mesenchymal stem cell against cardiac ischemia-reperfusion injury by HMGB1/STAT3 signaling

被引:0
|
作者
JingYi WEN [1 ,2 ]
HuiXi PENG [1 ]
Dan WANG [3 ]
ZhiMin WEN [4 ]
YuTong LIU [4 ]
Jian QU [4 ]
HongXuan CUI [1 ]
YuYing WANG [1 ]
YanLin DU [1 ]
Ting WANG [4 ]
Cong GENG [4 ]
Bing XU [1 ]
机构
[1] Department of Clinical Pharmacy, the Second Affiliated Hospital of Dalian Medical University
[2] Department of Pharmacy, the Second Affiliated Hospital of Inner Mongolia Medical University
[3] Department of Pharmacy, Ordos Central Hospital
[4] Department of Clinical Laboratory, the Second Affiliated Hospital of Dalian Medical
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R54 [心脏、血管(循环系)疾病];
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摘要
BACKGROUND Myocardial ischemia-reperfusion(I/R) is a serious and irreversible injury. Bone marrow-derived mesenchymal stem cells(MSCs) is considered to be a potential therapy for I/R injury due to the paracrine effects. High-mobility group box1(HMGB1) is a novel mediator in MSC and regulates the response of inflammation injury. Signal Transduction and Transcription Activator 3(STAT3) is a critical transcription factor and important for release of paracrine factors. However, the relationship between HMGB1 and STAT3 in paracrine effect of MSC remains unknown.METHODS In vitro, hypoxia/reoxygenation injury model was established by Anaero Pack System and examined by Annexin V flow cytometry, CCK8 assay and morphology observation. Detection of apoptotic proteins and protein expression of HMGB1and STAT3 by Western blot.RESULTS The conditioned medium of MSCs with or without LPS pretreatment was cocultured with H9C2 cells for 24 h before hypoxia treatment and MSC showed obvious cardiomyocytes protect role, as evidence by decreased apoptosis rate and improved cells viability, and LPS pretreated MSC exhibited better protect role than untreated MSC. However, such effect was abolished in HMGB1 deficiency group, silencing HMGB1 decreased the secretion of vascular endothelial growth factor(VEGF), hepatocyte growth factor(HGF), insulin growth factor(IGF), cell viability, and the expression of STAT3. Furthermore, STAT3 silence attenuated the protective effect of LPS in MSC.CONCLUSIONS These findings suggested that LPS improved MSC-mediated cardiomyocytes protection by HMGB1/STAT3signaling.
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页码:801 / 812
页数:12
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