An overview of retinal light damage models for preclinical studies on age-related macular degeneration: identifying molecular hallmarks and therapeutic targets.

IF 3.4 3区 医学 Q2 NEUROSCIENCES Reviews in the Neurosciences Pub Date : 2023-12-29 Print Date: 2024-04-25 DOI:10.1515/revneuro-2023-0130
Giulia Carozza, Darin Zerti, Annamaria Tisi, Marco Ciancaglini, Mauro Maccarrone, Rita Maccarone
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Abstract

Age-related macular degeneration (AMD) is a complex, multifactorial disease leading to progressive and irreversible retinal degeneration, whose pathogenesis has not been fully elucidated yet. Due to the complexity and to the multiple features of the disease, many efforts have been made to develop animal models which faithfully reproduce the overall AMD hallmarks or that are able to mimic the different AMD stages. In this context, light damage (LD) rodent models of AMD represent a suitable and reliable approach to mimic the different AMD forms (dry, wet and geographic atrophy) while maintaining the time-dependent progression of the disease. In this review, we comprehensively reported how the LD paradigms reproduce the main features of human AMD. We discuss the capability of these models to broaden the knowledge in AMD research, with a focus on the mechanisms and the molecular hallmarks underlying the pathogenesis of the disease. We also critically revise the remaining challenges and future directions for the use of LD models.

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用于老年性黄斑变性临床前研究的视网膜光损伤模型概述:确定分子标志和治疗目标。
老年性黄斑变性(AMD)是一种复杂的多因素疾病,会导致进行性和不可逆的视网膜变性,其发病机制尚未完全阐明。由于这种疾病的复杂性和多重特征,人们一直在努力开发动物模型,以忠实再现老年性黄斑变性的整体特征或模拟老年性黄斑变性的不同阶段。在这种情况下,AMD 的光损伤(LD)啮齿动物模型代表了一种合适而可靠的方法,可以模拟不同形式的 AMD(干性、湿性和地理性萎缩),同时保持疾病随时间变化的发展过程。在这篇综述中,我们全面报告了 LD 模型如何再现人类 AMD 的主要特征。我们讨论了这些模型在拓宽 AMD 研究知识方面的能力,重点是该疾病的发病机制和分子特征。我们还对使用 LD 模型所面临的挑战和未来方向进行了批判性修正。
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来源期刊
Reviews in the Neurosciences
Reviews in the Neurosciences 医学-神经科学
CiteScore
9.40
自引率
2.40%
发文量
54
审稿时长
6-12 weeks
期刊介绍: Reviews in the Neurosciences provides a forum for reviews, critical evaluations and theoretical treatment of selective topics in the neurosciences. The journal is meant to provide an authoritative reference work for those interested in the structure and functions of the nervous system at all levels of analysis, including the genetic, molecular, cellular, behavioral, cognitive and clinical neurosciences. Contributions should contain a critical appraisal of specific areas and not simply a compilation of published articles.
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