首页> 外文期刊>Cytotherapy >Cycloxygenase-2 inhibition potentiates trans-differentiation of Wharton's jelly-mesenchymal stromal cells into endothelial cells: Transplantation enhances neovascularization-mediated wound repair
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Cycloxygenase-2 inhibition potentiates trans-differentiation of Wharton's jelly-mesenchymal stromal cells into endothelial cells: Transplantation enhances neovascularization-mediated wound repair

机译:环氧氧基酶-2抑制瓦顿果冻 - 间充质基质细胞将瓦顿果冻 - 间充质细胞分化为内皮细胞:移植增强新生血管介导的伤口修复

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Background: Neo-vascularization, an indispensible phenomenon for tissue regeneration, facilitates repair and remodeling of wound tissues. This process is impaired in chronic wounds due to reduced number and recruitment of endothelial cells (ECs), thereby necessitating development of newer strategies to enhance the EC repertoire as a therapeutic approach. Methods: We explored the 'plasticity' of Wharton's jelly derived-mesenchymal stromal cells (WJ-MSCs) using an anti-inflammatory drug-mediated enhanced trans-differentiation into ECs, based on our observation of temporal decrease in COX-2 expression during trans-differentiation of MSCs into ECs at day 7 and 14 along with mature ECs. Results: At a physiological level, an increased DiI-labeled acetylated-low density lipoprotein (DiI-Ac-LDL) uptake, proliferation, migration and chick chorio allantoic membrane (CAM)-vasculogenesis occurred while at a molecular level significant up-regulation in messenger RNA (mRNA) and protein expression of endothelial-specific markers, Vegfr2, Pecam, eNOS, VE-Cadh and Tie-2, along with an activated p-VEGFR2 and its downstream mediators were observed in celecoxib-preconditioned ECs as compared with WJ-MSCs. Green fluorescent protein (GFP)-expressing stable WJ-MSCs and trans-differentiated EC-D14 in the absence/presence of celecoxib were generated using antibiotic selection for intradermal transplantation at the wound site on a murine 'excisional splinting wound' model. Engraftment of transplanted human cells in immunosuppressant-treated mice was confirmed by a significant increase in the expression levels of human gene-specific endothelial markers at the regenerated wound sites. Morphometrically, increased vascularity and percent wound closure were observed in regenerated wounds of mice transplanted with celecoxib-preconditioned-EC-D14. Conclusion: Cox-2 inhibition led to an enhanced trans-differentiation of WJ-MSCs into ECs that, when transplanted, accelerated the skin regeneration by e
机译:背景:新血管化,组织再生的不可或缺的现象,有助于修复和重塑伤口组织。由于减少数量和内皮细胞(ECS)的数量和募集,该方法在慢性伤口中受到损害,从而需要开发新的策略,以提高EC曲目作为治疗方法。方法:通过抗炎药介导的增强的反分化探讨了沃顿果冻衍生的间充质细胞(WJ-MSCs)的“可塑性”,基于我们在反式中的COX-2表达中的时间降低观察 - 与成熟ECS在第7天和第14天中的MSC分化为ECS。结果:在生理水平,增加DII标记的乙酰化低密度脂蛋白(DII-AC-LDL)吸收,增殖,迁移和小鸡核囊膜(CAM) - 血管发生,而在分子水平显着上调时发生在Celecoxib-Preconteded ECS中观察到内皮特异性标记物,VEGFR2,PECAM,eNOS,VE-CADH和TIE-2的信使RNA(mRNA)和蛋白表达以及活化的p-VEGFR2及其下游介质。与WJ相比-mscs。使用抗生素选择在伤口部位在鼠标血管内移植在鼠标“切除夹在伤口”模型上,产生绿色荧光蛋白(GFP)稳定的WJ-MSCs和转差异EC-D14在伤口部位的皮内移植的情况下产生。通过再生伤口位点的人类基因特异性内皮标记物的表达水平显着增加,确认移植的人细胞在免疫抑制剂处理的小鼠中的植入。在移植的小鼠预先改良的小鼠的再生伤口中,观察到情况,增加血管性和损伤百分比闭合。结论:COX-2抑制导致WJ-MSCs的转化为ECS,进入ECS,当移植时,通过E加速皮肤再生

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