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首页> 外文期刊>The journal of clinical investigation >Molecular clustering identifies complement and endothelin induction as early events in a mouse model of glaucoma
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Molecular clustering identifies complement and endothelin induction as early events in a mouse model of glaucoma

机译:分子聚类鉴定补体和内皮素诱导为青光眼小鼠模型的早期事件

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摘要

Glaucoma is one of the most common neurodegenerative diseases. Despite this, the earliest stages of this complex disease are still unclear. This study was specifically designed to identify early stages of glaucoma in DBA/2J mice. To do this, we used genome-wide expression profiling of optic nerve head and retina and a series of computational methods. Eyes with no detectable glaucoma by conventional assays were grouped into molecularly defined stages of disease using unbiased hierarchical clustering. These stages represent a temporally ordered sequence of glaucoma states. We then determined networks and biological processes that were altered at these early stages. Early-stage expression changes included upregulation of both the complement cascade and the endothelin system, and so we tested the therapeutic value of separately inhibiting them. Mice with a mutation in complement component 1a ( C1qa ) were protected from glaucoma. Similarly, inhibition of the endothelin system with bosentan, an endothelin receptor antagonist, was strongly protective against glaucomatous damage. Since endothelin 2 is potently vasoconstrictive and was produced by microglia/macrophages, our data provide what we believe to be a novel link between these cell types and vascular dysfunction in glaucoma. Targeting early molecular events, such as complement and endothelin induction, may provide effective new treatments for human glaucoma.
机译:青光眼是最常见的神经退行性疾病之一。尽管如此,这种复杂疾病的最早阶段仍不清楚。这项研究是专门为鉴定DBA / 2J小鼠中青光眼的早期阶段而设计的。为此,我们使用了视神经乳头和视网膜的全基因组表达谱分析和一系列计算方法。通过常规分析将无可检测的青光眼的眼睛使用无偏层次聚类分为疾病的分子定义阶段。这些阶段代表青光眼状态的时间顺序序列。然后,我们确定了在这些早期阶段已更改的网络和生物学过程。早期表达变化包括补体级联反应和内皮素系统的上调,因此我们测试了单独抑制它们的治疗价值。补体成分1a(C1qa)发生突变的小鼠受到了青光眼的保护。类似地,用内皮素受体拮抗剂波生坦抑制内皮素系统对青光眼损害具有强烈的保护作用。由于内皮素2具有强烈的血管收缩作用,并且是由小胶质细胞/巨噬细胞产生的,因此我们的数据提供了我们认为是这些细胞类型与青光眼血管功能障碍之间的新型联系。靶向早期分子事件,例如补体和内皮素诱导,可能为人类青光眼提供有效的新疗法。

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