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保护线粒体功能免受代谢应激影响的小分子可减缓小鼠视网膜变性模型中光感受器细胞的丧失。

Small Molecules that Protect Mitochondrial Function from Metabolic Stress Decelerate Loss of Photoreceptor Cells in Murine Retinal Degeneration Models.

作者信息

Beeson Craig, Lindsey Chris, Nasarre Cecile, Bandyopadhyay Mausumi, Perron Nathan, Rohrer Bärbel

机构信息

MitoChem Therapeutics Inc, 280 Calhoun Street, MSC140, 29403, Charleston, SC, USA.

Departments of Drug Discovery and Biomedical Sciences, Medical University of South Carolina, 29425, Charleston, SC, USA.

出版信息

Adv Exp Med Biol. 2016;854:449-54. doi: 10.1007/978-3-319-17121-0_60.

DOI:10.1007/978-3-319-17121-0_60
PMID:26427445
Abstract

One feature common to many of the pathways implicated in retinal degeneration is increased metabolic stress leading to impaired mitochondrial function. We found that exposure of cells to calcium ionophores or oxidants as metabolic stressors diminish maximal mitochondrial capacity. A library of 50,000 structurally diverse "drug-like" molecules was screened for protection against loss of calcium-induced loss of mitochondrial capacity in 661W rod-derived cells and C6 glioblastomas. Initial protective hits were then tested for protection against IBMX-induced loss of mitochondrial capacity as measured via respirometry. Molecules that protected mitochondria were then evaluated for protection of rod photoreceptor cells in retinal explants from rd1 mice. Two of the molecules attenuated loss of photoreceptor cells in the rd1 model. In the 661W cells, exposure to calcium ionophore or tert-butylhydroperoxide caused mitochondrial fragmentation that was blocked with the both compounds. Our studies have identified molecules that protect mitochondria and attenuate loss of photoreceptors in models of retinal degeneration suggesting that they could be good leads for development of therapeutic drugs for treatment of a wide variety of retinal dystrophies.

摘要

许多与视网膜变性相关的信号通路的一个共同特征是代谢应激增加,导致线粒体功能受损。我们发现,将细胞暴露于作为代谢应激源的钙离子载体或氧化剂会降低线粒体的最大容量。我们对一个包含50000种结构各异的“类药物”分子的文库进行了筛选,以寻找能够保护661W杆状细胞和C6胶质母细胞瘤免受钙离子诱导的线粒体容量丧失的物质。然后,对最初筛选出的具有保护作用的物质进行测试,以检测其对通过呼吸测定法测量的异丁基甲基黄嘌呤(IBMX)诱导的线粒体容量丧失的保护作用。接着,评估能够保护线粒体的分子对rd1小鼠视网膜外植体中视杆光感受器细胞的保护作用。其中两种分子在rd1模型中减轻了光感受器细胞的损失。在661W细胞中,暴露于钙离子载体或叔丁基过氧化氢会导致线粒体碎片化,而这两种化合物均可阻止这种碎片化。我们的研究已经鉴定出了能够保护线粒体并减轻视网膜变性模型中光感受器损失的分子,这表明它们可能是开发用于治疗多种视网膜营养不良的治疗药物的良好先导物。

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引用本文的文献

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Large-scale phenotypic drug screen identifies neuroprotectants in zebrafish and mouse models of retinitis pigmentosa.大规模表型药物筛选鉴定出斑马鱼和视网膜色素变性小鼠模型中的神经保护剂。
Elife. 2021 Jun 29;10:e57245. doi: 10.7554/eLife.57245.
2
Newly Identified Chemicals Preserve Mitochondrial Capacity and Decelerate Loss of Photoreceptor Cells in Murine Retinal Degeneration Models.新鉴定的化学物质可维持线粒体功能并减缓小鼠视网膜变性模型中光感受器细胞的丢失。
J Ocul Pharmacol Ther. 2021 Jul-Aug;37(6):367-378. doi: 10.1089/jop.2020.0140. Epub 2021 May 4.
3
SAHA is neuroprotective in in vitro and in situ models of retinitis pigmentosa.
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Mol Vis. 2021 Apr 2;27:151-160. eCollection 2021.
4
In vivo genome editing rescues photoreceptor degeneration via a Cas9/RecA-mediated homology-directed repair pathway.体内基因组编辑通过 Cas9/RecA 介导的同源定向修复途径挽救光感受器变性。
Sci Adv. 2019 Apr 17;5(4):eaav3335. doi: 10.1126/sciadv.aav3335. eCollection 2019 Apr.