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首页> 外文期刊>ACS nano >Deterministic Encapsulation of Human Cardiac Stem Cells in Variable Composition Nanoporous Gel Cocoons To Enhance Therapeutic Repair of Injured Myocardium
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Deterministic Encapsulation of Human Cardiac Stem Cells in Variable Composition Nanoporous Gel Cocoons To Enhance Therapeutic Repair of Injured Myocardium

机译:可变组合物纳米凝胶茧中人心脏干细胞的确定性封装,增强受伤心肌的治疗修复

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Although cocooning explant-derived cardiac stem cells (EDCs) in protective nanoporous gels (NPGs) prior to intramyocardial injection boosts long-term cell retention, the number of EDCs that finally engraft is trivial and unlikely to account for salutary effects on myocardial function and scar size. As such, we investigated the effect of varying the NPG content within capsules to alter the physical properties of cocoons without influencing cocoon dimensions. Increasing NPG concentration enhanced cell migration and viability while improving cell-mediated repair of injured myocardium. Given that the latter occurred with NPG content having no detectable effect on the long-term engraftment of transplanted cells, we found that changing the physical properties of cocoons prompted explant-derived cardiac stem cells to produce greater amounts of cytokines, nanovesicles, and microRNAs that boosted the generation of new blood vessels and new cardiomyocytes. Thus, by altering the physical properties of cocoons by varying NPG content, the paracrine signature of encapsulated cells can be enhanced to promote greater endogenous repair of injured myocardium.
机译:虽然在肌动脉内注射之前茧在保护纳米多孔凝胶(NPG)中的外部心脏干细胞(EDC)促进了长期细胞保留,但最终植入的EDC的数量是微不足道的,并且不太可能考虑对心肌功能和瘢痕的良好影响尺寸。因此,我们研究了改变胶囊内的NPG含量以改变茧的物理性质而不影响茧尺寸。增加NPG浓度增强的细胞迁移和活力,同时改善细胞介导的受伤心肌修复。给出后者发生的NPG含量没有对移植细胞的长期植入没有可检测的影响,我们发现改变CoCoons的物理性质促使外蛋白衍生的心脏干细胞产生更大量的细胞因子,纳米粒子和微稻草提升了新的血管和新心肌细胞的产生。因此,通过改变NPG含量改变茧的物理性质,可以增强包封细胞的旁静脉特征,以促进受伤心肌的更大内源性修复。

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