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Systems Biology as a Comparative Approach to Understand Complex Gene Expression in Neurological Diseases

机译:系统生物学作为一种了解神经疾病中复杂基因表达的比较方法

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摘要

Systems biology interdisciplinary approaches have become an essential analytical tool that may yield novel and powerful insights about the nature of human health and disease. Complex disorders are known to be caused by the combination of genetic, environmental, immunological or neurological factors. Thus, to understand such disorders, it becomes necessary to address the study of this complexity from a novel perspective. Here, we present a review of integrative approaches that help to understand the underlying biological processes involved in the etiopathogenesis of neurological diseases, for example, those related to autism and autism spectrum disorders (ASD) endophenotypes. Furthermore, we highlight the role of systems biology in the discovery of new biomarkers or therapeutic targets in complex disorders, a key step in the development of personalized medicine, and we demonstrate the role of systems approaches in the design of classifiers that can shorten the time for behavioral diagnosis of autism.
机译:系统生物学的跨学科方法已经成为一种必不可少的分析工具,它可以对人类健康和疾病的本质产生新颖而有力的见解。已知复杂疾病是由遗传,环境,免疫或神经因素的综合作用引起的。因此,为了理解这样的障碍,有必要从新颖的角度来研究这种复杂性。在这里,我们提出了一种综合方法的综述,该方法有助于理解神经系统疾病(例如,与自闭症和自闭症谱系障碍(ASD)内表型有关)的病因发病机制的生物学过程。此外,我们强调了系统生物学在复杂疾病中发现新的生物标志物或治疗靶标中的作用,这是个性化医学发展的关键步骤,并且我们展示了系统方法在设计分类器中的作用,可以缩短时间用于自闭症的行为诊断。

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