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Animal models of intestinal fibrosis: new tools for the understanding of pathogenesis and therapy of human disease

机译:肠道纤维化动物模型:了解人类疾病的发病机理和治疗方法的新工具

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摘要

Fibrosis is a serious condition complicating chronic inflammatory processes affecting the intestinal tract. Advances in this field that rely on human studies have been slow and seriously restricted by practical and logistic reasons. As a consequence, well-characterized animal models of intestinal fibrosis have emerged as logical and essential systems to better define and understand the pathophysiology of fibrosis. In point of fact, animal models allow the execution of mechanistic studies as well as the implementation of clinical trials with novel, pathophysiology-based therapeutic approaches. This review provides an overview of the currently available animal models of intestinal fibrosis, taking into consideration the methods of induction, key characteristics of each model, and underlying mechanisms. Currently available models will be classified into seven categories: spontaneous, gene-targeted, chemical-, immune-, bacteria-, and radiation-induced as well as postoperative fibrosis. Each model will be discussed in regard to its potential to create research opportunities to gain insights into the mechanisms of intestinal fibrosis and stricture formation and assist in the development of effective and specific antifibrotic therapies.
机译:纤维化是一种严重的疾病,使影响肠道的慢性炎症过程复杂化。依靠人类研究的这一领域的进展缓慢,并由于实际和后勤原因而受到严重限制。因此,特征明确的动物肠纤维化动物模型已成为逻辑和必要系统,可以更好地定义和理解纤维化的病理生理。实际上,动物模型允许通过基于病理生理学的新颖治疗方法执行机理研究以及临床试验。这篇综述提供了当前可用的肠道纤维化动物模型的概述,其中考虑了诱导方法,每种模型的关键特征以及潜在的机制。当前可用的模型将分为七个类别:自发的,基因靶向的,化学的,免疫的,细菌的和辐射诱导的以及术后纤维化。每个模型将讨论其潜力,以创造研究机会,以深入了解肠道纤维化和狭窄形成的机制,并协助开发有效和特定的抗纤维化疗法。

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