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Technological advances for deciphering the complexity of psychiatric disorders: merging proteomics with cell biology

机译:解读精神疾病复杂性的技术进步:蛋白质组学与细胞生物学的融合

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Proteomic studies have increased our understanding of the molecular pathways affected in psychiatric disorders. Mass spectrometry and two-dimensional gel electrophoresis analyses of post-mortem brain samples from psychiatric patients have revealed effects on synaptic, cytoskeletal, antioxidant and mitochondrial protein networks. Multiplex immunoassay profiling studies have found alterations in hormones, growth factors, transport and inflammation-related proteins in serum and plasma from living first-onset patients. Despite these advances, there are still difficulties in translating these findings into platforms for improved treatment of patients and for discovery of new drugs with better efficacy and side effect profiles. This review describes how the next phase of proteomic investigations in psychiatry should include stringent replication studies for validation of biomarker candidates and functional follow-up studies which can be used to test the impact on physiological function. All biomarker candidates should now be tested in series with traditional and emerging cell biological approaches. This should include investigations of the effects of post-translational modifications, protein dynamics and network analyses using targeted proteomic approaches. Most importantly, there is still an urgent need for development of disease-relevant cellular models for improved translation of proteomic findings into a means of developing novel drug treatments for patients with these life-altering disorders.
机译:蛋白质组学研究增加了我们对精神疾病中受影响的分子途径的了解。对来自精神病患者的死后大脑样本的质谱分析和二维凝胶电泳分析显示,它们对突触,细胞骨架,抗氧化剂和线粒体蛋白质网络具有影响。多重免疫测定分析研究发现,活着的首次发病患者的血清和血浆中的激素,生长因子,运输和炎症相关蛋白发生了变化。尽管取得了这些进展,将这些发现转化为平台以改善患者的治疗以及发现具有更好疗效和副作用的新药仍然存在困难。这篇综述描述了在精神病学中蛋白质组学研究的下一阶段应如何包括严格的复制研究以验证候选生物标志物和功能性后续研究,这些研究可用于测试对生理功能的影响。现在应使用传统和新兴的细胞生物学方法对所有候选生物标志物进行系列测试。这应该包括使用靶向蛋白质组学方法对翻译后修饰,蛋白质动力学和网络分析的影响进行调查。最重要的是,仍然迫切需要开发与疾病相关的细胞模型,以改善蛋白质组学发现的转化,从而为患有这些改变生命的疾病的患者开发新颖的药物治疗方法。

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