Funke Sebastian, Perumal Natarajan, Bell Katharina, Pfeiffer Norbert, Grus Franz H
a Experimental Ophthalmology , University Medical Center , Mainz , Germany.
Expert Rev Proteomics. 2017 Apr;14(4):311-334. doi: 10.1080/14789450.2017.1298448. Epub 2017 Mar 8.
Glaucoma, a major ocular neuropathy, is still far from being understood on a molecular scale. Proteomic workflows revealed glaucoma associated alterations in different eye components. By using state-of-the-art mass spectrometric (MS) based discovery approaches large proteome datasets providing important information about glaucoma related proteins and pathways could be generated. Corresponding proteomic information could be retrieved from various ocular sample species derived from glaucoma experimental models or from original human material (e.g. optic nerve head or aqueous humor). However, particular eye tissues with the potential for understanding the disease's molecular pathomechanism remains underrepresented. Areas covered: The present review provides an overview of the analysis depth achieved for the glaucomatous eye proteome. With respect to different eye regions and biofluids, proteomics related literature was found using PubMed, Scholar and UniProtKB. Thereby, the review explores the potential of clinical proteomics for glaucoma research. Expert commentary: Proteomics will provide important contributions to understanding the molecular processes associated with glaucoma. Sensitive discovery and targeted MS approaches will assist understanding of the molecular interplay of different eye components and biofluids in glaucoma. Proteomic results will drive the comprehension of glaucoma, allowing a more stringent disease hypothesis within the coming years.
青光眼是一种主要的眼部神经病变,在分子层面上仍远未被完全理解。蛋白质组学工作流程揭示了青光眼在不同眼部成分中的相关改变。通过使用基于最先进质谱(MS)的发现方法,可以生成提供有关青光眼相关蛋白质和通路重要信息的大型蛋白质组数据集。相应的蛋白质组学信息可以从青光眼实验模型或原始人类材料(如视神经乳头或房水)衍生的各种眼部样本类型中获取。然而,对于理解该疾病分子发病机制具有潜力的特定眼部组织,其研究仍然不足。涵盖领域:本综述概述了青光眼眼部蛋白质组所达到的分析深度。针对不同的眼部区域和生物流体,利用PubMed、Scholar和UniProtKB查找了蛋白质组学相关文献。由此,本综述探讨了临床蛋白质组学在青光眼研究中的潜力。专家评论:蛋白质组学将为理解与青光眼相关的分子过程做出重要贡献。灵敏的发现和靶向MS方法将有助于理解青光眼不同眼部成分和生物流体之间的分子相互作用。蛋白质组学结果将推动对青光眼的理解,在未来几年内形成更严格的疾病假设。