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首页> 外文期刊>Journal of Lipid Research >Thematic review series: systems biology approaches to metabolic and cardiovascular disorders. Multi-organ whole-genome measurements and reverse engineering to uncover gene networks underlying complex traits.
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Thematic review series: systems biology approaches to metabolic and cardiovascular disorders. Multi-organ whole-genome measurements and reverse engineering to uncover gene networks underlying complex traits.

机译:专题回顾系列:代谢和心血管疾病的系统生物学方法。多器官全基因组测量和逆向工程以揭示潜在复杂特征的基因网络。

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摘要

Together with computational analysis and modeling, the development of whole-genome measurement technologies holds the potential to fundamentally change research on complex disorders such as coronary artery disease. With these tools, the stage has been set to reveal the full repertoire of biological components (genes, proteins, and metabolites) in complex diseases and their interplay in modules and networks. Here we review how network identification based on reverse engineering, as applied to whole-genome datasets from simpler organisms, is now being adapted to more complex settings such as datasets from human cell lines and organs in relation to physiological and pathological states. Our focus is on the use of a systems biological approach to identify gene networks in coronary atherosclerosis. We also address how gene networks will probably play a key role in the development of early diagnostics and treatments for complex disorders in the coming era of individualized medicine.
机译:连同计算分析和建模,全基因组测量技术的发展具有从根本上改变诸如冠状动脉疾病等复杂疾病研究的潜力。利用这些工具,已经可以揭示复杂疾病中生物成分(基因,蛋白质和代谢产物)的全部组成部分以及它们在模块和网络中的相互作用。在这里,我们回顾了如何将基于逆向工程的网络识别(应用于来自简单生物的全基因组数据集)现在如何适应更为复杂的设置,例如来自人类细胞系和器官的与生理和病理状态相关的数据集。我们的重点是使用系统生物学方法来识别冠状动脉粥样硬化中的基因网络。我们还讨论了基因网络如何在即将来临的个性化医学时代对复杂疾病的早期诊断和治疗的发展中发挥关键作用。

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