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首页> 外文期刊>Annals of Surgery >Chimeric composite skin substitutes for delivery of autologous keratinocytes to promote tissue regeneration.
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Chimeric composite skin substitutes for delivery of autologous keratinocytes to promote tissue regeneration.

机译:嵌合复合皮肤替代物用于递送自体角质形成细胞以促进组织再生。

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OBJECTIVE: We hypothesize that the pathogen-free NIKS human keratinocyte progenitor cell line cultured in a chimeric fashion with patient's primary keratinocytes would produce a fully stratified engineered skin substitute tissue and serve to deliver autologous keratinocytes to a cutaneous wound. SUMMARY OF BACKGROUND DATA: Chimeric autologous/allogeneic bioengineered skin substitutes offer an innovative regenerative medicine approach for providing wound coverage and restoring cutaneous barrier function while delivering autologous keratinocytes to the wound site. NIKS keratinocytes are an attractive allogeneic cell source for this application. METHODS: Mixed populations of green fluorescent protein (GFP)-labeled NIKS and unlabeled primary keratinocytes were used to model the allogeneic and autologous components in chimeric monolayer and organotypic cultures. RESULTS: In monolayer coculture, GFP-labeled NIKS had no effect on the growth rate of primary keratinocytes and cell-cell junction formation between labeled and unlabeled keratinocytes was observed. In organotypic culture employing dermal and epidermal compartments, chimeric composite skin substitutes generated using up to 90% GFP-labeled NIKS exhibited normal tissue architecture and possessed substantial regions attributable to the primary keratinocytes. Tissues expressed proteins essential for the structure and function of a contiguous, fully-stratified squamous epithelia and exhibited barrier function similar to that of native skin. Furthermore, chimeric human skin substitutes stably engrafted in an in vivo mouse model, with long-term retention of primary keratinocytes but loss of the GFP-labeled NIKS population by 28 days after surgical application. CONCLUSIONS: This study provides proof of concept for the use of NIKS keratinocytes as an allogeneic cell source for the formation of bioengineered chimeric skin substitute tissues, providing immediate formal wound coverage while simultaneously supplying autologous cells for tissue regeneration.
机译:目的:我们假设以嵌合的方式与患者的原代角质形成细胞一起培养的无病原体NIKS人角质形成细胞祖细胞将产生完全分层的工程化皮肤替代组织,并能够将自体角质形成细胞递送至皮肤伤口。背景技术摘要:嵌合的自体/异源生物工程皮肤替代品提供了一种创新的再生医学方法,用于在将自体角质形成细胞递送至伤口部位的同时提供伤口覆盖和恢复皮肤屏障功能。 NIKS角质形成细胞是这种应用的一种有吸引力的同种异体细胞来源。方法:使用绿色荧光蛋白(GFP)标记的NIKS和未标记的原代角质形成细胞的混合种群模拟嵌合单层和器官型培养物中的同种异体和自体成分。结果:在单层共培养中,GFP标记的NIKS对原代角质形成细胞的生长速率没有影响,并且观察到标记的和未标记的角质形成细胞之间的细胞连接形成。在采用真皮和表皮区室的器官型培养中,使用高达90%GFP标记的NIKS生成的嵌合复合皮肤替代品表现出正常的组织结构,并具有可归因于原代角质形成细胞的实质区域。组织表达的蛋白质对于连续的,完全分层的鳞状上皮细胞的结构和功能至关重要,并且表现出与天然皮肤相似的屏障功能。此外,嵌合人皮肤替代物稳定地移植到体内小鼠模型中,具有长期保留原代角质形成细胞,但在手术应用后28天消失了GFP标记的NIKS群体。结论:这项研究为使用NIKS角质形成细胞作为同种异体细胞来源形成生物工程嵌合皮肤替代组织提供了概念上的证明,提供了即时的正式伤口覆盖,同时为组织再生提供了自体细胞。

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