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Noninvasive application of mesenchymal stem cell spheres derived from hESC accelerates wound healing in a CXCL12-CXCR4 axis-dependent manner

机译:源自hESC的间充质干细胞球体的无创应用以CXCL12-CXCR4轴依赖性方式加速伤口愈合

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Mesenchymal stem cells (MSC) derived from adult tissues effectively promote wound healing. However, MSC quality varies, and the quantity of MSC is limited, as MSC are acquired through donations. Moreover, the survival and functioning of dissociated MSC delivered to an inflammatory lesion are subject to challenges. Methods : Here, spheres (EMSCsubSp/sub) generated from human embryonic stem cell-derived MSC (EMSC) were directly dropped onto excised wounds in mice; the effects of EMSCsubSp/sub were compared to those of dissociated EMSC (EMSCsubDiss/sub). Following transplantation, we measured the extent of wound closure, dissected the histological features of the wounds, determined transcriptomic changes in cells isolated from the treated and control wounds, and evaluated the molecular mechanism of the effects of EMSC. Results : The application of EMSCsubSp/sub onto murine dermal wounds substantially increased survival and efficacy of EMSC compared to the topical application of EMSCsubDiss/sub. RNA sequencing (RNA-Seq) of cells isolated from the wounds highlighted the involvement of CXCL12-CXCR4 signaling in the effects of EMSCsubSp/sub, which was verified in EMSC via CXCL12 knockdown and in target cells (vascular endothelial cells, epithelial keratinocytes, and macrophages) via CXCR4 inhibition. Finally, we enhanced the biosafety of EMSCsubSp/sub by engineering cells with an inducible suicide gene. Conclusions : Together, these data suggest the topical application of EMSCsubSp/sub as an unlimited, quality-assured, safe, and noninvasive therapy for wound healing and the CXCL12-CXCR4 axis as a key player in this treatment.
机译:来自成人组织的间充质干细胞(MSC)有效促进伤口愈合。但是,由于MSC是通过捐赠获得的,因此MSC的质量各不相同,并且MSC的数量受到限制。此外,递送至炎性病变的解离的MSC的存活和功能受到挑战。方法:将人类胚胎干细胞来源的MSC(EMSC)产生的球体(EMSC Sp )直接滴在小鼠切下的伤口上;将EMSC Sp 的效果与解离的EMSC(EMSC Diss )的效果进行了比较。移植后,我们测量了伤口闭合的程度,解剖了伤口的组织学特征,确定了从治疗和对照伤口分离的细胞中的转录组变化,并评估了EMSC作用的分子机制。结果:与局部应用EMSC Diss 相比,将EMSC Sp 应用于小鼠皮肤伤口可显着提高EMSC的存活率和疗效。从伤口分离的细胞的RNA测序(RNA-Seq)突显了CXCL12-CXCR4信号参与了EMSC Sp 的作用,该作用已在EMSC中通过CXCL12敲除和靶细胞(血管内皮细胞)进行了验证细胞,上皮角质形成细胞和巨噬细胞)通过CXCR4抑制。最后,我们通过诱导自杀基因改造细胞,增强了EMSC Sp 的生物安全性。结论:这些数据共同表明,EMSC Sp 作为创伤治疗的无限,有质量保证,安全和无创性治疗的局部应用,而CXCL12-CXCR4轴是该治疗的关键参与者。

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