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心肌内注射间充质干细胞和VEGF165质粒对呋喃唑酮诱导的大鼠扩张型心肌病的有益作用。

Beneficial effects of intramyocardial mesenchymal stem cells and VEGF165 plasmid injection in rats with furazolidone induced dilated cardiomyopathy.

作者信息

Yu Qin, Fang Weiyi, Zhu Ning, Zheng Xiaoqun, Na Rongmei, Liu Baiting, Meng Lili, Li Zhu, Li Qianxiao, Li Xiaofei

机构信息

Department of Cardiology, Affiliated Zhongshan Hospital of Dalian University, Dalian, China.

Department of Cardiology, Shanghai Chest Hospital, Shanghai, China.

出版信息

J Cell Mol Med. 2015 Aug;19(8):1868-76. doi: 10.1111/jcmm.12558. Epub 2015 Mar 5.

Abstract

To explore the impact of myocardial injection of mesenchymal stem cells (MSCs) and specific recombinant human VEGF165 (hVEGF165 ) plasmid on collagen remodelling in rats with furazolidone induced dilated cardiomyopathy (DCM). DCM was induced by furazolidone (0.3 mg/bodyweight (g)/day per gavage for 8 weeks). Rats were then divided into four groups: (i) PBS group (n = 18): rats received equal volume myocardial PBS injection; (ii) MSCs group (n = 17): 100 μl culture medium containing 10(5) MSCs were injected into four sites of left ventricular free wall (25 μl per site); (iii) GENE group (n = 18): pCMVen-MLC2v-EGFP-VEGF165 plasmid [5 × 10(9) pfu (0.2 ml)] were injected into four sites of left ventricular free wall (0.05 ml per site)] and (iv) MSCs+GENE group (n = 17): rats received both myocardial MSCs and pCMVen-MLC2v-EGFP-VEGF165 plasmid injections. After 4 weeks, cardiac function was evaluated by echocardiography. Myocardial mRNA expressions of type I, type III collagen and transforming growth factor (TGF)-β1 were detected by RT-PCR. The protein expression of hVEGF165 was determined by Western blot. Myocardial protein expression of hVEGF165 was demonstrated in GENE and MSCs+GENE groups. Cardiac function was improved in MSCs, GENE and MSCs+GENE groups. Collagen volume fraction was significantly reduced and myocardial TGF-β1 mRNA expression significantly down-regulated in both GENE and MSCs+GENE groups, collagen type I/III ratio reduction was more significant in MSCs+GENE group than in MSCs or GENE group. Myocardial MSCs and hVEGF165 plasmid injection improves cardiac function possibly through down-regulating myocardial TGF-β1 expression and reducing the type I/III collagen ratio in this DCM rat model.

摘要

探讨心肌注射间充质干细胞(MSCs)和特异性重组人VEGF165(hVEGF165)质粒对呋喃唑酮诱导的扩张型心肌病(DCM)大鼠胶原重塑的影响。用呋喃唑酮(0.3mg/体重(g)/天,灌胃8周)诱导DCM。然后将大鼠分为四组:(i)PBS组(n = 18):大鼠接受等量心肌PBS注射;(ii)MSCs组(n = 17):将含有10⁵个MSCs的100μl培养基注射到左心室游离壁的四个部位(每个部位25μl);(iii)基因组(n = 18):将pCMVen-MLC2v-EGFP-VEGF165质粒[5×10⁹ pfu(0.2ml)]注射到左心室游离壁的四个部位(每个部位0.05ml);(iv)MSCs +基因组(n = 17):大鼠接受心肌MSCs和pCMVen-MLC2v-EGFP-VEGF165质粒注射。4周后,通过超声心动图评估心脏功能。通过RT-PCR检测I型、III型胶原和转化生长因子(TGF)-β1的心肌mRNA表达水平。通过蛋白质免疫印迹法测定hVEGF165的蛋白表达水平。基因组和MSCs +基因组均证实有hVEGF165心肌蛋白表达水平。MSCs组、基因组和MSCs +基因组的心脏功能均得到改善。基因组和MSCs +基因组的胶原容积分数均显著降低,心肌TGF-β1 mRNA表达水平均显著下调,MSCs +基因组的I/III型胶原比例降低比MSCs组或基因组更显著。在该DCM大鼠模型中,心肌注射MSCs和hVEGF165质粒可能通过下调心肌TGF-β1表达水平和降低I/III型胶原比例来改善心脏功能。

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