减少梗死心肌处的胶原沉积有利于诱导多能干细胞沉积和血管心肌的生成从而可改善左心室功能

2011-11-23 15:49 来源:丁香园 作者:广东省广州军区广州总医院
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J Am Coll Cardiol 2011 Nov;58(20):2118-27. [IF:14.292]

Reduced collagen deposition in infarcted myocardium facilitates induced pluripotent stem cell engraftment and angiomyogenesis for improvement of left ventricular function.

Dai B , Huang W , Xu M , Millard RW , Gao MH , Hammond HK , Menick DR , Ashraf M , Wang Y .

Liuhua Qiao Hospital, Guangzhou, Guangdong, China; Department of Pathology and Laboratory Medicine, Cardiovascular Center of Excellence, College of Medicine, University of Cincinnati Medical Center, Cincinnati, Ohio.

广东省广州市流花桥医院;美国俄亥俄州辛辛那提市辛辛那提医学中心大学医学院,心血管中心,病理及实验医学系

Abstract

The purpose of this study was to assess the effect of scar tissue composition on engraftment of progenitor cells into infarcted myocardium. Scar tissue formation after myocardial infarction creates a barrier that severely compromises tissue regeneration, limiting potential functional recovery. In vitro: A tricell patch (Tri-P) was created from peritoneum seeded and cultured with induced pluripotent stem cell-derived cardiomyocytes, endothelial cells, and mouse embryonic fibroblasts. The expression of fibrosis-related molecules from mouse embryonic fibroblasts and infarcted heart was measured by Western blot and quantitative reverse transcriptase polymerase chain reaction. In vivo: A Tri-P was affixed over the entire infarcted area 7 days after myocardial infarction in mice overexpressing adenylyl cyclase 6 (AC6). Engraftment efficiency of progenitor cells in hearts of AC6 mice was compared with that of control wild-type (WT) mice using a combination of in vivo bioluminescence imaging, post-mortem ex vivo tissue analysis, and the number of green fluorescent protein-positive cells. Echocardiography of left ventricular (LV) function was performed weekly. Hearts were harvested for analysis 4 weeks after Tri-P application. Mouse embryonic fibroblasts were stimulated with forskolin before an anoxia/reoxygenation protocol. Fibrosis-related molecules were analyzed. In AC6 mice, infarcted hearts treated with Tri-P showed significantly higher bioluminescence imaging intensity and numbers of green fluorescent protein-positive cells than in WT mice. LV function improved progressively in AC6 mice from weeks 2 to 4 and was associated with reduced LV fibrosis. Application of a Tri-P in AC6 mice resulted in significantly higher induced pluripotent stem cell engraftment accompanied by angiomyogenesis in the infarcted area and improvement in LV function.

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