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Computer Science and Systems Biology: Integration towards Improvement

机译:计算机科学与系统生物学:整合以求改进

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Computer Science and Systems Biology have heralded remarkable technological advances in understanding the complex biological systems including human biochemical, molecular and neural pathways and networks. Systems biology integrates the computer applications and experimental biology in modeling’s, predictions and characterizations of complex and dynamic properties of biological systems. Particularly, multi-omics studies, high-throughput sequencing techniques and microarray techniques made possible the generation of large datasets from biological systems that could help in understanding the comprehensive molecular pathways, systems functions and behaviors. In the last decade, the computer science and systems biology approaches increased the interest in pathway based biomarker identification, identifying disease genes and drug targets, generation of global genetic interaction maps, and development of new diagnosis and therapeutics methods for deadly diseases and contemporary outbreaks. In this letter, I summarize the breakthroughs of the decade and future challenges in uncover the complex components of biological systems.
机译:计算机科学和系统生物学在了解复杂的生物系统(包括人类生化,分子和神经途径和网络)方面取得了令人瞩目的技术进步。系统生物学将计算机应用程序和实验生物学集成到生物系统的复杂和动态特性的建模,预测和表征中。特别是,多组学研究,高通量测序技术和微阵列技术使从生物系统生成大型数据集成为可能,这有助于理解全面的分子途径,系统功能和行为。在过去的十年中,计算机科学和系统生物学方法引起了人们对基于途径的生物标记物识别,疾病基因和药物靶标识别,全球遗传相互作用图谱的产生以及针对致命疾病和当代暴发的新诊断和治疗方法的开发的兴趣。在这封信中,我总结了发现生物系统复杂组成部分的十年来的突破和未来的挑战。

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