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Oxidative Lipidomics Coming of Age: Advances in Analysis of Oxidized Phospholipids in Physiology and Pathology

机译:氧化脂质组学的到来:氧化磷脂的生理和病理分析研究进展

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Significance: Oxidized phospholipids are now well recognized as markers of biological oxidative stress and bioactive molecules with both pro-inflammatory and anti-inflammatory effects. While analytical methods continue to be developed for studies of generic lipid oxidation, mass spectrometry (MS) has underpinned the advances in knowledge of specific oxidized phospholipids by allowing their identification and characterization, and it is responsible for the expansion of oxidative lipidomics. Recent Advances: Studies of oxidized phospholipids in biological samples, from both animal models and clinical samples, have been facilitated by the recent improvements in MS, especially targeted routines that depend on the fragmentation pattern of the parent molecular ion and improved resolution and mass accuracy. MS can be used to identify selectively individual compounds or groups of compounds with common features, which greatly improves the sensitivity and specificity of detection. Application of these methods has enabled important advances in understanding the mechanisms of inflammatory diseases such as atherosclerosis, steatohepatitis, leprosy, and cystic fibrosis, and it offers potential for developing biomarkers of molecular aspects of the diseases. Critical Issues and Future Directions: The future in this field will depend on development of improved MS technologies, such as ion mobility, novel enrichment methods and databases, and software for data analysis, owing to the very large amount of data generated in these experiments. Imaging of oxidized phospholipids in tissue MS is an additional exciting direction emerging that can be expected to advance understanding of physiology and disease. Antioxid. Redox Signal. 22, 1646-1666.
机译:意义:氧化磷脂现已被公认为是生物氧化应激和具有促炎和抗炎作用的生物活性分子的标志物。尽管继续研究分析方法来研究类脂脂质氧化,但质谱(MS)通过识别和表征特定的氧化磷脂,为基础知识的发展奠定了基础,并负责氧化脂质组学的发展。最新进展:MS的最新改进促进了对来自动物模型和临床样品的生物样品中氧化磷脂的研究,尤其是依赖于母体分子离子的裂解模式以及提高的分离度和质量准确度的靶向程序。 MS可用于选择性地鉴定具有共同特征的单个化合物或化合物组,从而大大提高检测的灵敏度和特异性。这些方法的应用使人们在理解诸如动脉粥样硬化,脂肪性肝炎,麻风病和囊性纤维化等炎症性疾病的机制方面取得了重要进展,并且为开发疾病分子方面的生物标志物提供了潜力。关键问题和未来方向:由于在这些实验中产生了大量数据,因此该领域的未来将取决于改进的质谱技术的发展,例如离子迁移率,新颖的富集方法和数据库以及用于数据分析的软件。组织MS中氧化磷脂的成像是一个新的令人振奋的方向,可以预期会促进对生理学和疾病的理解。抗氧化。氧化还原信号。 22,1646-1666。

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