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PEG Incorporated Polymeric Microcapsules for Intramyocardial Delivery of Sten Cells Genetically Modified by Baculovirus

机译:PEG掺入聚合物微胶囊,用于通过Baculovirus遗传修饰的凝胶细胞肌动态递送

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The ability of mesenchymal stem cells to self-renew and differentiate into specialized cell lineages makes them promising tools for regenerative medicine. Local injection and use of scaffolds had been employed earlier to deliver these cells; yet, an optimal delivery system remains to be identified. Through the present work we developed a new microcapsule delivery system using polymeric alginate-chitosan microcapsule coated with PEG (AC-PEG) to deliver human bone marrow derived stem cells (hBMSCs), genetically modified by recombinant baculoviruses (Bac-MGFP) carrying GFP as a reporter gene. The data indicates that the cells encapsulated in AC-PEG microcapsules can grow within the capsules. The capsules can also protect the cells against immune rejection. ACPEG microcapsules also had significantly higher mechanical and osmotic stability than commonly used AC microcapsules. The entrapped genetically modified cells showed transgene expression for at least two weeks. The encapsulated cells also retained their inherent potential to differentiate into multiple lineages. Thus, microencapsulated stem cells carrying therapeutic genes have immense potential to facilitate functional improvement in cellular heart failure therapy, although preclinical studies need to be done to establish their functional benefits on myocardial implantation.
机译:间充质干细胞对自我更新和分化成专用细胞谱系的能力使其成为再生医学的有希望的工具。局部注射和使用支架较早用于递送这些细胞;然而,仍有待识别最佳递送系统。通过本工作,我们开发了一种新的微胶囊递送系统,所述微胶囊递送系统使用涂有PEG(AC-PEG)的聚合物藻酸壳多壳聚糖微胶囊来递送人骨髓衍生的干细胞(HBMSCs),通过携带GFP的重组杆状病毒(BAC-MGFP)遗传修饰。报告基因。数据表明,在AC-PEG微胶囊中封装的细胞可以在胶囊内生长。胶囊还可以保护细胞免受免疫排斥反应。 ACPEG微胶囊也明显更高的机械和渗透稳定性,而不是常用的AC微胶囊。捕获的遗传修饰的细胞显示至少两周的转基因表达。封装的电池还保留了它们固有电位以区分为多个谱系。因此,携带治疗基因的微胶囊化干细胞具有促进细胞心力衰竭治疗功能性的巨大潜力,尽管需要进行临床前研究以建立对心肌植入的功能效果。

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