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Neurobiology of schizophrenia.

机译:精神分裂症的神经生物学。

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With its hallucinations, delusions, thought disorder, and cognitive deficits, schizophrenia affects the most basic human processes of perception, emotion, and judgment. Evidence increasingly suggests that schizophrenia is a subtle disorder of brain development and plasticity. Genetic studies are beginning to identify proteins of candidate genetic risk factors for schizophrenia, including dysbindin, neuregulin 1, DAOA, COMT, and DISC1, and neurobiological studies of the normal and variant forms of these genes are now well justified. We suggest that DISC1 may offer especially valuable insights. Mechanistic studies of the properties of these candidate genes and their protein products should clarify the molecular, cellular, and systems-level pathogenesis of schizophrenia. This can help redefine the schizophrenia phenotype and shed light on the relationship between schizophrenia and other major psychiatric disorders. Understanding these basic pathologic processes may yield novel targets for the development of more effective treatments.
机译:精神分裂症具有幻觉,妄想,思想障碍和认知缺陷,会影响人类最基本的感知,情感和判断力过程。越来越多的证据表明,精神分裂症是一种大脑发育和可塑性的微妙疾病。遗传学研究开始鉴定精神分裂症候选遗传危险因素的蛋白,包括dysbindin,神经调节蛋白1,DAOA,COMT和DISC1,现在已经对这些基因的正常和变异形式进行了神经生物学研究。我们建议DISC1可能提供特别有价值的见解。对这些候选基因及其蛋白产物的性质进行的机理研究应阐明精神分裂症的分子,细胞和系统水平的发病机理。这可以帮助重新定义精神分裂症的表型,并阐明精神分裂症与其他主要精神疾病之间的关系。了解这些基本病理过程可能会为开发更有效的治疗方法产生新的靶标。

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