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Animal models of scleroderma: lessons from transgenic and knockout mice.

机译:硬皮病动物模型:转基因和基因敲除小鼠的经验教训。

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PURPOSE OF REVIEW: The underlying pathogenesis of systemic sclerosis (SSc; scleroderma) involves a complex interplay of inflammation, fibrosis and vasculopathy that is incompletely understood. In this article, we highlight the important contributions that recent preclinical research has made to the knowledge base of pathogenesis and therapeutics in SSc, describe some of the newly developed models available for further investigation and discuss future research opportunities in this fascinating area. RECENT FINDINGS: Several well characterized SSc models are available for the study of fibrosis. However, recent study on transgenic and knockout models has advanced knowledge both in fibrosis research and in vascular disease in SSc. In the present review, we focus on models in which altered signalling, particularly transforming growth factor-beta (TGF-beta), is limited to fibroblasts. We discuss contemporary models of SSc vascular disease, transgenesis in fibrocyte research, the contribution to neurological signalling research and provide examples of how preclinical models have contributed to novel therapeutics development in SSc. We also look at how research from related disciplines impacts on the SSc knowledge base. SUMMARY: These new models represent exciting advances. However, none completely recapitulates the vasculopathic and inflammatory components of this disease. These advances help to delineate the relative contributions of specific ligands, receptors, their signalling pathways and feedback mechanisms, in fibrotic and inflammatory processes and this will provide new targets for potential therapies in SSc.
机译:审查目的:全身性硬化症(SSc;硬皮病)的潜在发病机制涉及炎症,纤维化和血管病变的复杂相互作用,目前尚不完全清楚。在本文中,我们重点介绍了最近的临床前研究对SSc的发病机理和治疗方法的知识库所做的重要贡献,描述了一些可用于进一步研究的新开发模型,并讨论了该迷人领域的未来研究机会。最近的发现:一些特征明确的SSc模型可用于研究纤维化。然而,最近关于转基因和基因敲除模型的研究在SSc的纤维化研究和血管疾病方面都有先进的知识。在当前的审查中,我们专注于模型中的信号,特别是转化生长因子-β(TGF-β)改变,仅限于成纤维细胞。我们讨论了SSc血管疾病的当代模型,纤维细胞研究中的转基因,对神经信号研究的贡献,并提供了临床前模型如何促进SSc新型疗法发展的实例。我们还将研究来自相关学科的研究如何对SSc知识库产生影响。简介:这些新模型代表了令人兴奋的进步。但是,没有一个能完全概括这种疾病的血管病变和炎性成分。这些进展有助于描述特定配体,受体,它们的信号传导途径和反馈机制在纤维化和炎症过程中的相对作用,这将为SSc的潜在疗法提供新的靶标。

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