Kidney Disease Program, University of Louisville, Louisville, KY, USA.
Adv Chronic Kidney Dis. 2010 Nov;17(6):455-68. doi: 10.1053/j.ackd.2010.09.003.
Proteomics has evolved into an invaluable tool for biomedical research and for research on renal diseases. A central player in the proteomic revolution is the mass spectrometer and its application in analyzing biological samples. Our need to understand both the identity of proteins and their abundance has led to improvements in the ability of mass spectrometers (such as with the use of the LTQ-Orbitrap mass spectrometer) to analyze complex (tryptic) peptide mixtures with high sensitivity and high mass accuracy in a high-throughput manner. Unsurprisingly, this occurred coincidentally with dramatic improvements in our understanding of CKD, the mechanisms through which CKD progresses, and the development of candidate CKD biomarkers. This review attempts to present a basic framework for the operational components of mass spectrometers, basic insight into how they are used in renal research, and a discussion on CKD research related to mass spectrometry.
蛋白质组学已成为生物医学研究和肾脏疾病研究的宝贵工具。在蛋白质组学革命中,起着核心作用的是质谱仪及其在分析生物样本中的应用。我们需要了解蛋白质的身份及其丰度,这促使质谱仪的能力得到了提高(例如使用 LTQ-Orbitrap 质谱仪),能够以高通量的方式以高灵敏度和高精度分析复杂的(胰蛋白酶)肽混合物。毫不奇怪,这与我们对 CKD 的理解的显著提高、CKD 进展的机制以及候选 CKD 生物标志物的发展同时发生。本综述试图为质谱仪的操作组件提供一个基本框架,介绍它们在肾脏研究中的基本应用,并讨论与质谱相关的 CKD 研究。