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Optimization of an ex vivo wound healing model in the adult human skin: Functional evaluation using photodynamic therapy:functional evaluation using photodynamic therapy

机译:成人皮肤中离体伤口愈合模型的优化:使用光动力疗法的功能评估:使用光动力疗法的功能评估

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摘要

Limited utility of in vitro tests and animal models of human repair, create a demand for alternative models of cutaneous healing capable of functional testing. The adult human skin Wound Healing Organ Culture (WHOC) provides a useful model, to study repair and enable evaluation of therapies such as the photodynamic therapy (PDT). Thus, the aim here was to identify the optimal WHOC model and to evaluate the role of PDT in repair. Wound geometry, system of support, and growth media, cellular and matrix biomarkers were investigated in WHOC models (n=11). Subsequently, cellular activity, ECM remodelling and oxidative stress plus gene and protein levels of makers of wound repair measured the effect of PDT on the optimized WHOC. WHOCs embedded in collagen and supplemented DMEM were better organized showing stratified epidermis and compact dermis with developing neo-epidermis. Post-PDT, the advancing re-epithelialization tongue was 35% longer, highly proliferative with CK-14 and p16 increased (p
机译:体外测试和人类修复动物模型的实用性有限,因此需要能够进行功能测试的皮肤愈合替代模型。成人皮肤伤口愈合器官培养(WHOC)提供了有用的模型,可用于研究修复方法并评估光动力疗法(PDT)等疗法。因此,此处的目的是确定最佳的WHOC模型并评估PDT在修复中的作用。在WHOC模型中对伤口的几何形状,支撑系统以及生长培养基,细胞和基质生物标志物进行了研究(n = 11)。随后,细胞活性,ECM重塑和氧化应激以及创面修复者的基因和蛋白质水平测量了PDT对优化的WHOC的影响。嵌入胶原蛋白和补充的DMEM中的WHOC具有更好的组织性,显示分层的表皮和致密的真皮以及新的表皮。 PDT后,前进的上皮再生舌长35%,随着CK-14和p16的增加而高度增殖(p

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