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建模青光眼的力学参数。

Modeling the Mechanical Parameters of Glaucoma.

机构信息

University Eye Clinic Maastricht UMC+, Maastricht University Medical Centre+, Maastricht, The Netherlands.

Department of Complex Tissue Regeneration (CTR), MERLN Institute for Technology-Inspired Regenerative Medicine, Maastricht University, Maastricht, The Netherlands.

出版信息

Tissue Eng Part B Rev. 2019 Oct;25(5):412-428. doi: 10.1089/ten.TEB.2019.0044. Epub 2019 Sep 18.

Abstract

Glaucoma is a major eye disease characterized by a progressive loss of retinal ganglion cells (RGCs). Biomechanical forces as a result of hydrostatic pressure and strain play a role in this disease. Decreasing intraocular pressure is the only available therapy so far, but is not always effective and does not prevent blindness in many cases. There is a need for drugs that protect RGCs from dying in glaucoma; to develop these, we need valid glaucoma and drug screening models. Since models are unsuitable for screening purposes, we focus on and models in this review. Many groups have studied pressure and strain model systems to mimic glaucoma, to investigate the molecular and cellular events leading to mechanically induced RGC death. Therefore, the focus of this review is on the different mechanical model systems used to mimic the biomechanical forces in glaucoma. Most models use either cell or tissue strain, or fluid- or gas-controlled hydrostatic pressure application and apply it to the relevant cell types such as trabecular meshwork cells, optic nerve head astrocytes, and RGCs, but also to entire eyes. New model systems are warranted to study concepts and test experimental compounds for the development of new drugs to protect vision in glaucoma patients. Impact Statement The outcome of currently developed models to investigate mechanically induced retinal ganglion cell death by applying different mechanical strains varies widely. This suggests that a robust glaucoma model has not been developed yet. However, a comprehensive overview of current developments is not available. In this review, we have therefore assessed what has been done before and summarized the available knowledge in the field, which can be used to develop improved models for glaucoma research.

摘要

青光眼是一种主要的眼部疾病,其特征是视网膜神经节细胞(RGCs)逐渐丧失。静水压力和应变产生的生物力学力在这种疾病中起作用。降低眼内压是目前唯一可用的治疗方法,但并不总是有效,在许多情况下也不能预防失明。需要有药物来保护 RGC 免受青光眼的死亡;为了开发这些药物,我们需要有效的青光眼和药物筛选模型。由于动物模型不适合筛选目的,因此我们在本综述中重点关注细胞和组织模型。许多研究小组已经研究了压力和应变模型系统,以模拟青光眼,研究导致机械诱导的 RGC 死亡的分子和细胞事件。因此,本综述的重点是用于模拟青光眼生物力学力的不同机械模型系统。大多数模型使用细胞或组织应变,或流体或气压控制的静水压力应用,并将其应用于相关的细胞类型,如小梁网细胞、视神经头部星形胶质细胞和 RGC,但也应用于整个眼睛。需要新的模型系统来研究概念和测试用于保护青光眼患者视力的实验化合物的开发。

影响评估 目前开发的用于通过施加不同机械应变来研究机械诱导的视网膜神经节细胞死亡的模型的结果差异很大。这表明尚未开发出稳健的青光眼模型。然而,目前还没有全面的概述。在本综述中,我们评估了以前的研究,并总结了该领域的现有知识,这些知识可用于开发用于青光眼研究的改进模型。

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