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Quantitative and Systems Pharmacology 3. Network-Based Identification of New Targets for Natural Products Enables Potential Uses in Aging-Associated Disorders

机译:定量和系统药理学3.基于网络的天然产物新靶标鉴定可在与衰老相关的疾病中潜在使用

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摘要

Aging that refers the accumulation of genetic and physiology changes in cells and tissues over a lifetime has been shown a high risk of developing various complex diseases, such as neurodegenerative disease, cardiovascular disease and cancer. Over the past several decades, natural products have been demonstrated as anti-aging interveners via extending lifespan and preventing aging-associated disorders. In this study, we developed an integrated systems pharmacology infrastructure to uncover new indications for aging-associated disorders by natural products. Specifically, we incorporated 411 high-quality aging-associated human genes or human-orthologous genes from mus musculus (MM), saccharomyces cerevisiae (SC), caenorhabditis elegans (CE), and drosophila melanogaster (DM). We constructed a global drug-target network of natural products by integrating both experimental and computationally predicted drug-target interactions (DTI). We further built the statistical network models for identification of new anti-aging indications of natural products through integration of the curated aging-associated genes and drug-target network of natural products. High accuracy was achieved on the network models. We showcased several network-predicted anti-aging indications of four typical natural products (caffeic acid, metformin, myricetin, and resveratrol) with new mechanism-of-actions. In summary, this study offers a powerful systems pharmacology infrastructure to identify natural products for treatment of aging-associated disorders.
机译:衰老是指一生中细胞和组织中遗传和生理学变化的积累,已显示出罹患各种复杂疾病的高风险,例如神经退行性疾病,心血管疾病和癌症。在过去的几十年中,天然产物通过延长使用寿命和预防与衰老相关的疾病而被证明是抗衰老干预剂。在这项研究中,我们开发了一个集成的系统药理基础设施,以发现天然产物与衰老相关的疾病的新适应症。具体来说,我们从小家鼠(MM),酿酒酵母(SC),秀丽隐杆线虫(CE)和黑腹果蝇(DM)中整合了411个与衰老相关的高质量人类基因或人类直系同源基因。我们通过整合实验和计算预测的药物-靶标相互作用(DTI),构建了一个天然药物的全球药物-靶标网络。我们进一步建立了统计网络模型,通过整合策展的衰老相关基因和天然药物的药物靶标网络,识别天然产物的新抗衰老适应症。在网络模型上实现了高精度。我们展示了网络预测的四种典型天然产物(咖啡酸,二甲双胍,杨梅素和白藜芦醇)的抗衰老迹象,并具有新的作用机理。总而言之,这项研究提供了强大的系统药理基础设施,可确定用于治疗衰老相关疾病的天然产物。

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