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首页> 外文期刊>Pharmacology and Therapeutics: The Journal of the International Encyclopedia of Pharmacology and Therapeutics >Recent advances in mass spectrometry-based approaches for proteomics and biologics: Great contribution for developing therapeutic antibodies
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Recent advances in mass spectrometry-based approaches for proteomics and biologics: Great contribution for developing therapeutic antibodies

机译:基于质谱的蛋白质组学和生物学方法的最新进展:促进治疗抗体的巨大贡献

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摘要

Since the turn of the century, mass spectrometry (MS) technologies have continued to improve dramatically, and advanced strategies that were impossible a decade ago are increasingly becoming available. The basic characteristics behind these advancements are MS resolution, quantitative accuracy, and information science for appropriate data processing. The spectral data from MS contain various types of information. The benefits of improving the resolution of MS data include accurate molecular structural-derived information, and as a result, we can obtain a refined biomolecular structure determination in a sequential and large-scale manner. Moreover, in MS data, not only accurate structural information but also the generated ion amount plays an important rule. This progress has greatly contributed a research field that captures biological events as a system by comprehensively tracing the various changes in biomolecular dynamics. The sequential changes of proteome expression in biological pathways are very essential, and the amounts of the changes often directly become the targets of drug discovery or indicators of clinical efficacy. To take this proteomic approach, it is necessary to separate the individual MS spectra derived from each biomolecule in the complexed biological samples. MS itself is not so infinite to perform the all peak separation, and we should consider improving the methods for sample processing and purification to make them suitable for injection into MS.
机译:自世纪之交以来,质谱(MS)技术继续急剧提高,十年前不可能的先进策略越来越变得可用。这些进步背后的基本特征是用于适当数据处理的MS解决,定量准确度和信息科学。来自MS的光谱数据包含各种类型的信息。改善MS数据分辨率的益处包括精确的分子结构衍生信息,结果,我们可以以顺序和大规模的方式获得精细的生物分子结构测定。此外,在MS数据中,不仅是准确的结构信息,而且产生的离子量也起着重要规则。这一进展极大地贡献了一种研究领域,通过全面追踪生物分子动力学的各种变化,捕获生物事件作为系统。生物途径中蛋白质组表达的顺序变化是非常必要的,并且变化的量通常直接成为药物发现或临床疗效指标的目标。为了采取这种蛋白质组学方法,有必要将衍生自络合的生物样品中的每种生物分子的单独的MS光谱分离。 MS本身并不是如此无限地执行所有峰分离,并且我们应该考虑改进样品加工和纯化的方法,使它们适合注射到MS中。

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