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Mass spectrometry-based proteomics for systems-level characterization of biological responses to engineered nanomaterials

机译:基于质谱的蛋白质组学用于对工程纳米材料的生物响应进行系统级表征

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摘要

The widespread use of engineered nanomaterials or nanotechnology makes the characterization of biological responses to nanomaterials an important area of research. The application of omics approaches, such as mass spectrometry-based proteomics, have revealed new insights into the cellular responses of exposure to nanomaterials, including how nanomaterials interact and alter cellular pathways. In addition, exposure to engineered nanomaterials often leads to the generation of reactive oxygen species and cellular oxidative stress, which implicates a redox-dependent regulation of cellular responses under such conditions. In this review, we discuss quantitative proteomics-based approaches, with an emphasis on redox proteomics, as a tool for systems-level characterization of the biological responses induced by engineered nanomaterials.
机译:工程纳米材料或纳米技术的广泛使用使得表征对纳米材料的生物反应成为重要的研究领域。诸如基于质谱的蛋白质组学之类的组学方法的应用揭示了对暴露于纳米材料的细胞反应的新见解,包括纳米材料如何相互作用和改变细胞途径。另外,暴露于工程纳米材料通常会导致活性氧的产生和细胞氧化应激,这暗示了在这种条件下细胞响应的氧化还原依赖性调节。在这篇综述中,我们讨论了基于蛋白质组学的定量方法,重点是氧化还原蛋白质组学,作为对工程纳米材料诱导的生物反应进行系统级表征的工具。

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