生物医学工程趋势:关注基因组学和蛋白质组学。

Linda Pattini, Riccardo Bertacco, Gabriele Candiani, Marco Masseroli, Stefano Servi
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引用次数: 4

摘要

基因组学是一门研究生物体基因组的学科,旨在研究组成活细胞蓝图的序列的不同部分的功能规范,以揭示细胞的生理机制及其基本、发育和组织特异性过程。蛋白质组学是对由基因组编码的细胞执行分子的综合研究,进一步提高了复杂性水平,因为从基因到蛋白质的数量大量扩增,以及蛋白质产物的复杂结构和功能表征,这些特性赋予了特定的生化特性。虽然技术的不断进步为研究和测量细胞中基因和蛋白质的行为提供了新的实验解决方案,但生物数据的分析和管理不能脱离数学,统计学和信息学学科的使用,这些学科在现代分子生物学中起着关键作用。基因组学和蛋白质组学作为互补的方法,共同描绘了现代分子医学的框架,其中亚细胞尺度上的功能机制的知识,在生理和病理条件下,可能导致诊断,治疗和药物开发的改进。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Trends in biomedical engineering: focus on Genomics and Proteomics.

Genomics is the study of an organism's genome aimed at the functional specification of the different parts of the sequence that comprise the blueprint of the living cell to unveil the mechanisms of the physiology of the cell and its basic, developmental, and tissue-specific processes. Proteomics is the comprehensive study of the executive molecules of the cell coded by the genome, further raising the level of complexity, because of the large amplification in the number, going from genes to proteins, and to the sophisticated structural and functional characterization of protein products, which confer specific biochemical properties. While continuous progress in technology provides new experimental solutions to study and measure the behavior of genes and proteins in the cell, the analysis and the management of biological data cannot be uncoupled from the use of mathematics, statistics, and informatics disciplines that play a key role in modern molecular biology.Together, genomics and proteomics, meant as complementary approaches, delineate the framework of modern molecular medicine, where the knowledge of the functional mechanisms on a subcellular scale, both under physiologic and pathologic conditions, may lead to an improvement in diagnosis, therapy, and drug development.

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来源期刊
Journal of Applied Biomaterials & Biomechanics
Journal of Applied Biomaterials & Biomechanics 生物-材料科学:生物材料
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