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首页> 外文期刊>American Journal of Physiology >Proteomics: current techniques and potential applications to lung disease.
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Proteomics: current techniques and potential applications to lung disease.

机译:蛋白质组学:当前技术和对肺部疾病的潜在应用。

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摘要

Proteomics aims to study the whole protein content of a biological sample in one set of experiments. Such an approach has the potential value to acquire an understanding of the complex responses of an organism to a stimulus. The large vascular and air space surface area of the lung expose it to a multitude of stimuli that can trigger a variety of responses by many different cell types. This complexity makes the lung a promising, but also challenging, target for proteomics. Important steps made in the last decade have increased the potential value of the results of proteomics studies for the clinical scientist. Advances in protein separation and staining techniques have improved protein identification to include the least abundant proteins. The evolution in mass spectrometry has led to the identification of a large part of the proteins of interest rather than just describing changes in patterns of protein spots. Protein profiling techniques allow the rapid comparison of complex samples and the direct investigation of tissue specimens. In addition, proteomics has been complemented by the analysis of posttranslational modifications and techniques for the quantitative comparison of different proteomes. These methodologies have made the application of proteomics on the study of specific diseases or biological processes under clinically relevant conditions possible. The quantity of data that is acquired with these new techniques places new challenges on data processing and analysis. This article provides a brief review of the most promising proteomics methods and some of their applications to pulmonary research.
机译:蛋白质组学旨在通过一组实验研究生物样品的全部蛋白质含量。这种方法具有潜在价值,可帮助人们理解生物体对刺激的复杂反应。肺部较大的血管和空气空间表面积使肺部受到多种刺激,这些刺激可触发许多不同细胞类型的多种反应。这种复杂性使肺部成为蛋白质组学的有希望但又具有挑战性的目标。过去十年中采取的重要步骤为临床科学家增加了蛋白质组学研究结果的潜在价值。蛋白质分离和染色技术的进步已经改善了蛋白质鉴定,以包括最不丰富的蛋白质。质谱的发展已导致鉴定出大部分目标蛋白质,而不仅仅是描述蛋白质斑点模式的变化。蛋白质谱分析技术可以快速比较复杂的样品并直接研究组织标本。此外,蛋白质组学已得到翻译后修饰分析和用于定量比较不同蛋白质组的技术的补充。这些方法使蛋白质组学在临床相关条件下研究特定疾病或生物学过程成为可能。用这些新技术获取的数据量对数据处理和分析提出了新的挑战。本文简要介绍了最有前途的蛋白质组学方法及其在肺部研究中的一些应用。

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