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Systems Medicine: The Application of Systems Biology Approaches for Modern Medical Research and Drug Development

机译:系统医学:系统生物学方法在现代医学研究和药物开发中的应用

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The exponential development of highly advanced scientific and medical research technologies throughout the past 30 years has arrived to the point where the high number of characterized molecular agents related to pathogenesis cannot be readily integrated or processed by conventional analytical approaches. Indeed, the realization that several moieties are signatures of disease has partly led to the increment of complex diseases being characterized. Scientists and clinicians can now investigate and analyse any individual dysregulations occurring within the genomic, transcriptomic, miRnomic, proteomic, and metabolomic levels thanks to currently available advanced technologies. However, there are drawbacks within this scientific brave new age in that only isolated molecular levels are individually investigated for their influence in affecting any particular health condition. Since their conception in 1992, systems biology/medicine focuses mainly on the perturbations of overall pathway kinetics for the consequent onset and/or deterioration of the investigated condition/s. Systems medicine approaches can therefore be employed for shedding light in multiple research scenarios, ultimately leading to the practical result of uncovering novel dynamic interaction networks that are critical for influencing the course of medical conditions. Consequently, systems medicine also serves to identify clinically important molecular targets for diagnostic and therapeutic measures against such a condition.
机译:在过去的30年中,高度科学和医学研究技术的指数级发展已经到了这样的地步:无法通过常规分析方法轻易整合或处理大量与发病相关的特征分子。确实,认识到几个部分是疾病的特征,这部分地导致了所表征的复杂疾病的增加。借助当前可用的先进技术,科学家和临床医生现在可以调查和分析在基因组,转录组学,miRnomic,蛋白质组学和代谢组学水平内发生的任何个体失调。但是,在这个科学勇敢的新时代中存在一些缺点,即仅对孤立的分子水平对其影响任何特定健康状况的影响进行了单独研究。自从1992年提出概念以来,系统生物学/医学主要着眼于所研究病症的随后发作和/或恶化的总体通路动力学的扰动。因此,可以将系统医学方法用于多种研究场景,最终导致发现新颖的动态相互作用网络的实际结果,而这种相互作用网络对影响医学状况至关重要。因此,系统医学还可以用于确定临床上重要的分子靶标,以针对此类疾病进行诊断和治疗。

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