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Systems Biology - A Pivotal Research Methodology for Understanding the Mechanisms of Traditional Medicine

机译:系统生物学-理解传统医学机制的关键研究方法

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Objectives: Systems biology is a novel subject in the field of life science that aims at a systems' level understanding of biological systems. Because of the significant progress in high-throughput technologies and molecular biology, systems biology occupies an important place in research during the post-genome era. Methods: The characteristics of systems biology and its applicability to traditional medicine research have been discussed from three points of view: data and databases, network analysis and inference, and modeling and systems prediction. Results: The existing databases are mostly associated with medicinal herbs and their activities, but new databases reflecting clinical situations and platforms to extract, visualize and analyze data easily need to be constructed. Network pharmacology is a key element of systems biology, so addressing the multi-component, multi-target aspect of pharmacology is important. Studies of network pharmacology highlight the drug target network and network target. Mathematical modeling and simulation are just in their infancy, but mathematical modeling of dynamic biological processes is a central aspect of systems biology. Computational simulations allow structured systems and their functional properties to be understood and the effects of herbal medicines in clinical situations to be predicted. Conclusion: Systems biology based on a holistic approach is a pivotal research methodology for understanding the mechanisms of traditional medicine. If systems biology is to be incorporated into traditional medicine, computational technologies and holistic insights need to be integrated.
机译:目标:系统生物学是生命科学领域中的一门新兴学科,旨在从系统层面理解生物系统。由于高通量技术和分子生物学的重大进步,在后基因组时代,系统生物学在研究中占有重要地位。方法:从数据和数据库,网络分析和推理,建模和系统预测三个角度讨论了系统生物学的特征及其在传统医学研究中的适用性。结果:现有的数据库大多与草药及其活动有关,但是需要构建反映临床情况和提取,可视化和分析数据的平台的新数据库。网络药理学是系统生物学的关键要素,因此解决药理学的多组成部分,多目标方面很重要。网络药理学研究突出了药物靶标网络和网络靶标。数学建模和仿真还处于起步阶段,但是动态生物过程的数学建模是系统生物学的核心方面。计算模拟可以理解结构化系统及其功能特性,并可以预测草药在临床情况下的作用。结论:基于整体方法的系统生物学是理解传统医学机制的关键研究方法。如果要将系统生物学纳入传统医学,则需要整合计算技术和整体见解。

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