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分子大数据、机器智能和个性化健康时代的药物-食物相互作用。

Drug-food Interactions in the Era of Molecular Big Data, Machine Intelligence, and Personalized Health.

机构信息

Molecular Robotics, Cochin, Kerala, India.

Sanaria Inc, Rockville, MD, USA.

出版信息

Recent Adv Food Nutr Agric. 2022 Nov 14;13(1):27-50. doi: 10.2174/2212798412666220620104809.

Abstract

The drug-food interaction brings forth changes in the clinical effects of drugs. While favourable interactions bring positive clinical outcomes, unfavourable interactions may lead to toxicity. This article reviews the impact of food intake on drug-food interactions, the clinical effects of drugs, and the effect of drug-food in correlation with diet and precision medicine. Emerging areas in drug-food interactions are the food-genome interface (nutrigenomics) and nutrigenetics. Understanding the molecular basis of food ingredients, including genomic sequencing and pharmacological implications of food molecules, helps to reduce the impact of drug-food interactions. Various strategies are being leveraged to alleviate drug-food interactions; measures including patient engagement, digital health, approaches involving machine intelligence, and big data are a few of them. Furthermore, delineating the molecular communications across dietmicrobiome- drug-food-drug interactions in a pharmacomicrobiome framework may also play a vital role in personalized nutrition. Determining nutrient-gene interactions aids in making nutrition deeply personalized and helps mitigate unwanted drug-food interactions, chronic diseases, and adverse events from their onset. Translational bioinformatics approaches could play an essential role in the next generation of drug-food interaction research. In this landscape review, we discuss important tools, databases, and approaches along with key challenges and opportunities in drug-food interaction and its immediate impact on precision medicine.

摘要

药物-食物相互作用会改变药物的临床效果。虽然有利的相互作用会带来积极的临床结果,但不利的相互作用可能会导致毒性。本文综述了饮食对药物-食物相互作用、药物的临床效果以及药物-食物与饮食和精准医学相关性的影响。药物-食物相互作用的新兴领域是食物-基因组界面(营养基因组学)和营养遗传学。了解食物成分的分子基础,包括基因组测序和食物分子的药理学意义,有助于减少药物-食物相互作用的影响。目前正在利用各种策略来减轻药物-食物相互作用;包括患者参与、数字健康、涉及机器智能的方法和大数据在内的措施就是其中的几种。此外,在药物-食物-药物相互作用的药理学微生物组框架中,阐明饮食-微生物组之间的分子通讯也可能在个性化营养中发挥重要作用。确定营养素-基因相互作用有助于使营养深入个性化,并有助于减轻不必要的药物-食物相互作用、慢性疾病和不良事件的发生。转化生物信息学方法可能在下一代药物-食物相互作用研究中发挥重要作用。在这篇综述中,我们讨论了药物-食物相互作用及其对精准医学的直接影响的重要工具、数据库和方法,以及关键挑战和机遇。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/09ee/10258917/9528c4c14d9c/FNA-13-27_F1.jpg

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