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首页> 外文期刊>Journal of Neuroimmunology: Official Bulletin of the Research Committee on Neuroimmunology of the World Federation of Neurology >Data integration and systems biology approaches for biomarker discovery: Challenges and opportunities for multiple sclerosis
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Data integration and systems biology approaches for biomarker discovery: Challenges and opportunities for multiple sclerosis

机译:用于发现生物标志物的数据集成和系统生物学方法:多发性硬化症的挑战和机遇

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摘要

New "omic" technologies and their application to systems biology approaches offer new opportunities for biomarker discovery in complex disorders, including multiple sclerosis (MS). Recent studies using massive genotyping, DNA arrays, antibody arrays, proteomics, glycomics, and metabolomics from different tissues (blood, cerebrospinal fluid, brain) have identified many molecules associated with MS, defining both susceptibility and functional targets (e.g., biomarkers). Such discoveries involve many different levels in the complex organizational hierarchy of humans (DNA, RNA, protein, etc.), and integrating these datasets into a coherent model with regard to MS pathogenesis would be a significant step forward. Given the dynamic and heterogeneous nature of MS, validating biomarkers is mandatory. To develop accurate markers of disease prognosis or therapeutic response that are clinically useful, combining molecular, clinical, and imaging data is necessary. Such an integrative approach would pave the way towards better patient care and more effective clinical trials that test new therapies, thus bringing the paradigm of personalized medicine in MS one step closer.
机译:新的“组学”技术及其在系统生物学方法中的应用为复杂疾病(包括多发性硬化症(MS))中生物标志物的发现提供了新的机会。最近使用来自不同组织(血液,脑脊液,大脑)的大量基因分型,DNA阵列,抗体阵列,蛋白质组学,糖组学和代谢组学的研究已经鉴定出许多与MS相关的分子,既定义了易感性又定义了功能性靶标(例如生物标志物)。这些发现涉及人类复杂的组织层次结构(DNA,RNA,蛋白质等)中的许多不同层次,将这些数据集整合到有关MS发病机理的连贯模型中将是重要的一步。鉴于MS的动态性和异质性,必须验证生物标志物。为了开发临床上有用的疾病预后或治疗反应的准确标记物,必须结合分子,临床和影像学数据。这种综合方法将为更好的患者护理和更有效的临床试验测试新疗法铺平道路,从而使MS中个性化医学的范式更近一步。

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