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The effects of microRNA on the absorption distribution metabolism and excretion of drugs

机译:microRNA对药物吸收分布代谢和排泄的影响

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摘要

The importance of genetic factors (e.g. sequence variation) in the absorption, distribution, metabolism, excretion (ADME) and overall efficacy of therapeutic agents is well established. Our ability to identify, interpret and utilize these factors is the subject of much clinical investigation and therapeutic development. However, drug ADME and efficacy are also heavily influenced by epigenetic factors such as DNA/histone methylation and non-coding RNAs [especially microRNAs (miRNAs)]. Results from studies using tools, such as in silico miRNA target prediction, in vitro functional assays, nucleic acid profiling/sequencing and high-throughput proteomics, are rapidly expanding our knowledge of these factors and their effects on drug metabolism. Although these studies reveal a complex regulation of drug ADME, an increased understanding of the molecular interplay between the genome, epigenome and transcriptome has the potential to provide practically useful strategies to facilitate drug development, optimize therapeutic efficacy, circumvent adverse effects, yield novel diagnostics and ultimately become an integral component of personalized medicine.
机译:遗传因素(例如序列变异)在治疗剂的吸收,分布,代谢,排泄(ADME)和总体功效中的重要性已得到充分确立。我们识别,解释和利用这些因素的能力是许多临床研究和治疗开发的主题。但是,药物ADME和功效也受到表观遗传因素(例如DNA /组蛋白甲基化和非编码RNA,尤其是microRNA(miRNA))的严重影响。使用诸如硅miRNA靶标预测,体外功能测定,核酸谱分析/测序和高通量蛋白质组学等工具的研究结果正在迅速扩展我们对这些因素及其对药物代谢的影响的知识。尽管这些研究揭示了药物ADME的复杂调控,但对基因组,表观基因组和转录组之间分子相互作用的进一步了解可能提供实用的策略,以促进药物开发,优化治疗效果,规避不良作用,产生新颖的诊断方法和最终成为个性化医学的组成部分。

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