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Induced pluripotent stem cells-derived microvesicles accelerate deep second-degree burn wound healing in mice through miR-16-5p-mediated promotion of keratinocytes migration

机译:诱导多能干细胞衍生的微泡通过MiR-16-5P介导的角蛋白细胞迁移促进小鼠促进小鼠的深度二度烧伤愈合

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Background: Induced pluripotent stem cells (iPSCs) have emerged as a promising treatment paradigm for skin wounds. Extracellular vesicles are now recognized as key mediators of beneficial stem cells paracrine effects. In this study, we investigated the effect of iPSCs-derived microvesicles (iPSCs-MVs) on deep second-degree burn wound healing and explored the underlying mechanism. Methods: iPSCs-MVs were isolated and purified from conditioned medium of iPSCs and confirmed by electron micrograph and size distribution. In deep second-degree burn model, iPSCs-MVs were injected subcutaneously around wound sites and the efficacy was assessed by measuring wound closure areas, histological examination and immunohistochemistry staining. In vitro, CCK-8, EdU staining and scratch assays were used to assess the effects of iPSCs-MVs on proliferation and migration of keratinocytes. Next, we explored the underlying mechanisms by high-throughput microRNA sequencing. The roles of the miR-16-5p in regulation of keratinocytes function induced by iPSCs-MVs were assessed. Moreover, the target gene which mediated the biological effects of miR-16-5p in keratinocytes was also been detected. Finally, we examined the effect of local miR-16-5p treatment on deep second degree-burns wound healing in mice. Results: The local transplantation of iPSCs-MVs into the burn wound bed resulted in accelerated wound closure including the increased re-epithelialization. In vitro, iPSCs-MVs could promote the migration of keratinocytes. We also found that miR-16-5p is a critical factor in iPSCs-MVs-induced promotion of keratinocytes migration in vitro through activating p38/MARK pathway by targeting Desmoglein 3 (Dsg3). Finally, we confirmed that local miR-16-5p treatment could boost re-epithelialization during burn wound healing. Conclusion: Therefore, our results indicate that iPSCs-MVs-derived miR-16-5p may be a novel therapeutic approach for deep second-degree burn wound healing.? The author(s).
机译:背景:诱导多能干细胞(IPSCs)作为皮肤伤口的有希望的治疗范例出现。细胞外囊泡现在被认为是有益干细胞旁静脉作用的关键介质。在这项研究中,我们研究了IPSCS衍生的微泡(IPSCS-MV)对深度二级烧伤愈合并探索了潜在机制的影响。方法:分离IPSCS-MVs,从IPSC的条件培养基中分离和纯化,并通过电子显微照片和尺寸分布证实。在深度二度燃烧模型中,IPSCS-MVS皮下注射伤口部位,通过测量伤口闭合区域,组织学检查和免疫组织化学染色来评估疗效。在体外,CCK-8,EDU染色和划痕测定用于评估IPSCS-MVS对角质形成细胞增殖和迁移的影响。接下来,我们通过高通量MicroRNA测序探索了潜在机制。评估MIR-16-5P在IPSCS-MVS诱导的角质形成细胞功能调节中的作用。此外,还发现了介导在角质形成细胞中miR-16-5p的生物效应的靶基因。最后,我们检查了局部miR-16-5p治疗对小鼠深度二度烧伤伤口愈合的影响。结果:IPSCS-MVS进入烧伤伤口床的局部移植导致加速伤口闭合,包括增加重新上皮化。体外,IPSCS-MV可以促进角质形成细胞的迁移。我们还发现MiR-16-5P是IPSCS-MVS诱导的促进角质形成细胞促进体外迁移的关键因素,通过靶向DESMogle 3(DSG3)激活P38 / mark途径。最后,我们确认局部miR-16-5p治疗可以在烧伤伤口愈合期间提高重新上皮化。结论:因此,我们的结果表明IPSCS-MVS衍生的MIR-16-5P可能是深度二级烧伤愈合的新型治疗方法。作者。

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