皮肤病的啮齿动物模型。

IF 1.8 4区 医学 Q3 DERMATOLOGY Italian Journal of Dermatology and Venereology Pub Date : 2024-06-01 Epub Date: 2024-01-29 DOI:10.23736/S2784-8671.23.07700-9
Dorottya Asbóth, Barnabás Bánfi, Dorottya Kocsis, Franciska Erdő
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引用次数: 0

摘要

为了评估药物和候选药物可能产生的有益影响,目前有不同的啮齿类动物皮肤病模型。这些模型能够模拟疾病的一个或多个特征,但不能完全再现人类皮肤病的发病机理。因此,为了改进技术,人们通过基因工程、化学或物理诱导等方法开发了许多新的模型。目前,体内啮齿类动物模型提供了与生理学最相关的方法,以产生与大多数皮肤病相关的病理变化。在这篇简短的综述中,将介绍一些广泛使用的动物技术(牛皮癣、过敏性接触性皮炎、特应性皮炎、伤口愈合、黑色素瘤和非黑色素瘤型皮肤癌以及紫外线红斑),这些技术目前已应用于药理学、药代动力学、药物学和皮肤病学研究。首先介绍了人类病理机制的要点,然后简要讨论了啮齿动物模型。最后,作者提供了批判性评价。然而,根据 3R 规则,强烈建议减少实验动物的数量,因此,在皮肤病学研究中,先进的体外和体内技术变得越来越重要,而不是体内临床前方法。正如展望部分所述,尽管二维/三维体外和芯片皮肤技术前景广阔,并具有许多优势,但它们在血管、免疫、分泌和神经复杂性方面还不能完全取代动物模型。
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Rodent models of dermatological disorders.

To assess the possible beneficial effects of drugs and drug candidates, different dermatological disease models are available in rodents. These models are able to mimic one or more characteristic features of the disorders, but not completely recapitulate the pathogenesis of the human skin diseases. Therefore, to improve the technology many new models have been developed both by genetic engineering and by chemical or physical induction. Currently the in vivo rodent models provide the physiologically most relevant approach to produce the pathology related to the majority of dermatological diseases. In this short review some widely used animal techniques (psoriasis, allergic contact dermatitis, atopic dermatitis, wound healing, melanoma and non-melanoma type skin cancers and UV erythema) are shown which are currently applied in pharmacological, pharmacokinetic, pharmaceutical and dermatological research. First the main points of the human pathomechanism are shown and afterwards the rodent models are briefly discussed. Finally critical evaluation is provided by the authors. However, according to the 3R rule the number of experimental animals is strongly suggested to be reduced, therefore the advanced in vitro and ex vivo techniques become more and more important contrary to in vivo preclinical methods also in dermatological research. As it is described in the outlook section, although the 2D/3D in vitro and skin on-a-chip techniques are promising and have many advantages they are not able to completely substitute the animal models in their vascular, immunological, secretory and neural complexity.

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