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Systems Biology: A Powerful Tool for Drug Development

机译:系统生物学:一种强大的药物开发工具

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The conventional way of characterizing a disease consists of correlating clinical symptoms with pathological findings. Although this approach for many years has assisted clinicians in establishing syndromic patterns for pathophenotypes, it has major limitations as it does not consider preclinical disease states and is unable to individualize medicine. Moreover, the complexity of disease biology is the major challenge in the development of effective and safe medicines. Therefore, the process of drug development must consider biological responses in both pathological and physiological conditions. Consequently, a quantitative and holistic systems biology approach could aid in understanding complex biological systems by providing an exceptional platform to integrate diverse data types with molecular as well as pathway information, leading to development of predictive models for complex diseases. Furthermore, an increase in knowledgebase of proteins, genes, metabolites from high -throughput experimental data accelerates hypothesis generation and testing in disease models. The systems biology approach also assists in predicting drug effects, repurposing of existing drugs, identifying new targets, facilitating development of personalized medicine and improving decision making and success rate of new drugs in clinical trials.
机译:表征疾病的常规方式包括与病理结果相关的关联。虽然这种方法多年来,辅助临床医生在建立综合肠蛋型综合疾病状态的主要局限性,并且无法个性化。此外,疾病生物学的复杂性是有效和安全药物发展的主要挑战。因此,药物开发过程必须考虑病理和生理条件的生物反应。因此,定量和整体系统生物学方法可以通过提供一种特殊的平台来帮助理解复杂的生物系统,以将不同的数据类型与分子信息集成,导致复杂疾病的预测模型的发展。此外,来自高滴漏实验数据的蛋白质,基因,代谢物的知识库的增加加速了疾病模型的假想产生和测试。系统生物学方法还有助于预测药物效应,批准现有药物,确定新目标,促进个性化医学的发展,提高临床试验中新药的决策和成功率。

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