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Development of a 3-dimensional human skin equivalent wound model for investigating novel wound healing therapies

机译:用于研究新型伤口愈合疗法的三维人体皮肤等效伤口模型的开发

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摘要

Numerous difficulties are associated with the conduct of preclinical studies related to skin and wound repair. Use of small animal models such as rodents is not optimal because of their physiological differences to human skin and mode of wound healing. Although pigs have previously been used because of their human-like mode of healing, the expense and logistics related to their use also renders them suboptimal. In view of this, alternatives are urgently required to advance the field. The experiments reported herein were aimed at developing and validating a simple, reproducible, three-dimensional ex vivo de-epidermised dermis human skin equivalent wound model for the preclinical evaluation of novel wound therapies. Having established that the human skin equivalent wound model does in fact “heal," we tested the effect of two novel wound healing therapies. We also examined the utility of the model for studies exploring the mechanisms underpinning these therapies. Taken together the data demonstrate that these new models will have wide-spread application for the generation of fundamental new information on wound healing processes and also hold potential in facilitating preclinical optimization of dosage, duration of therapies, and treatment strategies prior to clinical trials.ud
机译:与皮肤和伤口修复相关的临床前研究涉及许多困难。使用小动物模型(例如啮齿动物)并不是最佳选择,因为它们与人体皮肤的生理差异和伤口愈合的方式不同。尽管以前使用过猪是因为它们具有类似于人的治愈方式,但是与使用猪有关的费用和后勤工作也使猪不理想。鉴于此,迫切需要替代方案以推进该领域。本文报道的实验旨在开发和验证简单,可复制的三维离体去表皮真皮人皮肤等效伤口模型,以用于新型伤口治疗的临床前评估。确定人类皮肤等效伤口模型确实可以“治愈”后,我们测试了两种新型伤口愈合疗法的效果,并检验了该模型在研究支持这些疗法的机制中的实用性。这些新模型将在伤口愈合过程的基础新信息生成方面得到广泛应用,并且在促进临床试验之前的剂量,治疗时间和治疗策略的临床前优化方面也具有潜力。

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