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用于评估皮肤替代物的体外伤口愈合模型。

An in vitro wound healing model for evaluation of dermal substitutes.

机构信息

Department of Dermatology, Nijmegen Center for Molecular Life Sciences, Radboud University Nijmegen Medical Center, Nijmegen, The Netherlands.

出版信息

Wound Repair Regen. 2013 Nov-Dec;21(6):890-6. doi: 10.1111/wrr.12086. Epub 2013 Aug 12.

Abstract

Reepithelialization of skin wounds is essential to restore barrier function and prevent infection. This process requires coordination of keratinocyte proliferation, migration, and differentiation, which may be impeded by various extrinsic and host-dependent factors. Deep, full-thickness wounds, e.g., burns, are often grafted with dermal matrices before transplantation of split-skin grafts. These dermal matrices need to be integrated in the host skin and serve as a substrate for neoepidermis formation. Systematic preclinical analysis of keratinocyte migration on established and experimental matrices has been hampered by the lack of suitable in vitro model systems. Here, we developed an in vitro full-thickness wound healing model in tissue-engineered human skin that allowed analysis of the reepithelialization process across different grafted dermal substitutes. We observed strong differences between porous and nonporous matrices, the latter being superior for reepithelialization. This finding was corroborated in rodent wound healing models. The model was optimized using lentivirus-transduced keratinocytes expressing enhanced green fluorescent protein and by the addition of human blood, which accelerated keratinocyte migration underneath the clot. Our model shows great potential for preclinical evaluation of tissue-engineered dermal substitutes in a medium-throughput format, thereby obviating the use of large numbers of experimental animals.

摘要

皮肤伤口的再上皮化对于恢复屏障功能和预防感染至关重要。这个过程需要角质形成细胞的增殖、迁移和分化的协调,而这可能会受到各种外在和宿主依赖性因素的阻碍。例如,深度、全层伤口(如烧伤)通常在移植皮片之前用真皮基质进行移植。这些真皮基质需要整合到宿主皮肤中,并作为新表皮形成的基质。角质形成细胞在已建立的和实验性基质上迁移的系统临床前分析受到缺乏合适的体外模型系统的阻碍。在这里,我们开发了一种组织工程化的人类皮肤全层伤口愈合模型,该模型允许在不同移植的真皮替代物上分析再上皮化过程。我们观察到多孔和非多孔基质之间存在强烈差异,后者在再上皮化方面更具优势。这一发现在啮齿动物伤口愈合模型中得到了证实。该模型通过转导表达增强型绿色荧光蛋白的慢病毒进行了优化,并添加了人血,这加速了血块下的角质形成细胞迁移。我们的模型在中通量格式下显示出了对组织工程化真皮替代物进行临床前评估的巨大潜力,从而避免了大量实验动物的使用。

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