首页> 外文期刊>Biomaterials >The use of human mesenchymal stem cells encapsulated in RGD modified alginate microspheres in the repair of myocardial infarction in the rat.
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The use of human mesenchymal stem cells encapsulated in RGD modified alginate microspheres in the repair of myocardial infarction in the rat.

机译:RGD修饰的藻酸盐微球中封装的人间充质干细胞在大鼠心肌梗死修复中的用途。

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摘要

The combination of scaffold material and cell transplantation therapy has been extensively investigated in cardiac tissue engineering. However, many polymers are difficult to administer or lack the structural integrity to restore LV function. Additionally, polymers need to be biological friendly, favorably influence the microenvironment and increase stem cell retention and survival. This study determined whether human mesenchymal stem cells (hMSCs) encapsulated in RGD modified alginate microspheres are capable of facilitating myocardial repair. The in vitro study of hMSCs demonstrated that the RGD modified alginate can improve cell attachment, growth and increase angiogenic growth factor expression. Alginate microbeads and hMSCs encapsulated in microbeads successfully maintained LV shape and prevented negative LV remodeling after an MI. Cell survival was significantly increased in the encapsulated hMSC group compared with PBS control or cells alone. Microspheres, hMSCs, and hMSCs in microspheres groups reduced infarct area and enhanced arteriole formation. In summary, surface modification and microencapsulation techniques can be combined with cell transplantation leading to the maintenance of LV geometry, preservation of LV function, increase of angiogenesis and improvement of cell survival.
机译:支架材料和细胞移植疗法的结合已在心脏组织工程中进行了广泛研究。但是,许多聚合物难以给药或缺乏恢复LV功能的结构完整性。另外,聚合物需要是生物友好的,有利地影响微环境并增加干细胞的保留和存活。这项研究确定了封装在RGD修饰藻酸盐微球中的人间充质干细胞(hMSCs)是否能够促进心肌修复。 hMSC的体外研究表明,RGD修饰的藻酸盐可以改善细胞附着,生长并增加血管生成生长因子的表达。藻酸盐微珠和封装在微珠中的hMSC成功维持LV形状并防止MI后出现负的LV重塑。与PBS对照或单独的细胞相比,在封装的hMSC组中细胞存活率显着增加。微球组中的微球,hMSC和hMSC减少了梗塞面积并增强了小动脉形成。总之,表面修饰和微囊化技术可以与细胞移植相结合,从而维持LV的几何形状,保持LV功能,增加血管生成并改善细胞存活率。

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