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Current Advancements in the Development and Characterization of Full-Thickness Adult Neuroretina Organotypic Culture Systems

机译:全厚度成虫神经内有机型培养系统的开发和表征的目前进展

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摘要

Retinal degenerative diseases such as macular degeneration, glaucoma, and diabetic retinopathy constitute the leading cause of blindness in the industrialized world. There is a continuous demand in investigative ophthalmic research for the development of new treatment modalities for retinal therapy. Unfortunately, efforts to identify novel neuroprotective and neuroregenerative agents have often been hindered by an experimental model gap that exists between high-throughput methods via dissociated cells and preclinical animal models. Even though dissociated cell culture is rapid and high-throughput, it is limited in its ability to reproduce the in vivo conditions. In contrast, preclinical animal models may offer greater fidelity, albeit they lack efficiency and experimental control. Retina explant cultures provide an ideal bridge to close this gap and have been used to study an array of biological processes such as retinal development and neurodegeneration. However, it is often difficult to interpret findings from these studies due to the wide variety of experimental species and culture methods used. This review provides a comprehensive overview of current ex vivo neuroretina culture methods and assessments, with a focus on their suitability, advantages, and disadvantages, along with novel insights and perspectives on the organotypic culture model as a high-throughput platform for screening promising molecules for retinal regeneration. This is a work of the U.S. Government and is not subject to copyright protection in the USA. Foreign copyrights may apply. Published by S. Karger AG, Basel
机译:视网膜退行性疾病如黄斑变性,青光眼和糖尿病视网膜病变构成了工业化世界失明的主要原因。对视网膜治疗的新治疗方式的研究具有不断的需求。遗憾的是,识别新型神经保护和神经营养性药物的努力通常通过解离细胞和临床前动物模型在高通量方法之间存在的实验模型间隙来阻碍。尽管解离细胞培养是快速且高通量的,但它的再现能力有限。相比之下,临床前动物模型可以提供更大的保真度,尽管它们缺乏效率和实验控制。视网膜外植体培养提供理想的桥梁,以缩短这种差距,并已用于研究一种生物过程,如视网膜发育和神经变性。然而,由于使用的各种实验物种和培养方法,通常难以从这些研究中解释结果。本综述提供了全面概述了当前的exvivo neuroretina培养方法和评估,重点关注他们的适用性,优势和缺点,以及有机型文化模型作为筛选有希望分子的高通量平台的新颖洞察和观点视网膜再生。这是美国政府的一项工作,不受美国的版权保护。外国版权可能适用。由巴塞尔的S. Karger AG发布

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