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Molecular-timetable methods for detection of body time and rhythm disorders from single-time-point genome-wide expression profiles

机译:从单时间点全基因组表达谱中检测身体时间和节律障碍的分子时间表方法

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摘要

Detection of individual body time (BT) via a single-time-point assay has been a longstanding unfulfilled dream in medicine, because BT information can be exploited to maximize potency and minimize toxicity during drug administration and thus will enable highly optimized medication. To achieve this dream, we created a “molecular timetable” composed of >100 “time-indicating genes,” whose gene expression levels can represent internal BT. Here we describe a robust method called the “molecular-timetable method” for BT detection from a single-time-point expression profile. The power of this method is demonstrated by the sensitive and accurate detection of BT and the sensitive diagnosis of rhythm disorders. These results demonstrate the feasibility of BT detection based on single-time-point sampling, suggest the potential for expression-based diagnosis of rhythm disorders, and may translate functional genomics into chronotherapy and personalized medicine.
机译:在医学上,通过单时间点检测个体时间(BT)一直是一个未实现的梦想,因为可以利用BT信息在给药过程中最大程度地发挥作用并最大程度地降低毒性,从而实现高度优化的药物治疗。为了实现这一梦想,我们创建了一个“分子时间表”,该分子时间表由> 100个“时间指示基因”组成,其基因表达水平可以代表内部BT。在这里,我们描述了一种从单时间点表达谱中检测BT的可靠方法,称为“分子时间表方法”。这种方法的强大功能通过对BT的灵敏而准确的检测以及对节奏障碍的灵敏诊断得到证明。这些结果证明了基于单时间点采样进行BT检测的可行性,表明了基于表达的节律障碍诊断的潜力,并且可能将功能基因组学转化为计时疗法和个性化药物。

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