首页> 美国卫生研究院文献>American Journal of Translational Research >Engineered 3D bioimplants using elastomeric scaffold self-assembling peptide hydrogel and adipose tissue-derived progenitor cells for cardiac regeneration
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Engineered 3D bioimplants using elastomeric scaffold self-assembling peptide hydrogel and adipose tissue-derived progenitor cells for cardiac regeneration

机译:使用弹性体支架自组装肽水凝胶和脂肪组织来源的祖细胞设计的3D生物植入物用于心脏再生

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摘要

Contractile restoration of myocardial scars remains a challenge with important clinical implications. Here, a combination of porous elastomeric membrane, peptide hydrogel, and subcutaneous adipose tissue-derived progenitor cells (subATDPCs) was designed and evaluated as a bioimplant for cardiac regeneration in a mouse model of myocardial infarction. SubATDPCs were doubly transduced with lentiviral vectors to express bioluminescent-fluorescent reporters driven by constitutively active, cardiac tissue-specific promoters. Cells were seeded into an engineered bioimplant consisting of a scaffold (polycaprolactone methacryloyloxyethyl ester) filled with a peptide hydrogel (PuraMatrix™), and transplanted to cover injured myocardium. Bioluminescence and fluorescence quantifications showed de novo and progressive increases in promoter expression in bioactive implant-treated animals. The bioactive implant was well adapted to the heart, and fully functional vessels traversed the myocardium-bioactive implant interface. Treatment translated into a detectable positive effect on cardiac function, as revealed by echocardiography. Thus, this novel implant is a promising construct for supporting myocardial regeneration.
机译:心肌疤痕的收缩性修复仍然是具有重要临床意义的挑战。在这里,多孔弹性体膜,肽水凝胶和皮下脂肪组织来源的祖细胞(subATDPCs)的组合被设计和评估为心肌梗塞小鼠模型中用于心脏再生的生物植入物。 SubATDPCs用慢病毒载体双重转导,以表达由组成型活性心脏组织特异性启动子驱动的生物发光荧光报告基因。将细胞接种到工程化的生物植入物中,该植入物由填充有肽水凝胶(PuraMatrix™)的支架(聚己内酯甲基丙烯酰氧基乙基酯)组成,并进行移植以覆盖受损的心肌。生物发光和荧光定量显示在经生物活性植入物处理的动物中启动子表达从头和进行性增加。生物活性植入物非常适合心脏,功能齐全的血管横穿心肌生物活性植入物界面。超声心动图显示,治疗转化为对心脏功能的可检测到的积极作用。因此,这种新颖的植入物是用于支持心肌再生的有前途的构建体。

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