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氧化磷脂:病理生理学中新兴的脂质介质

Oxidized phospholipids: emerging lipid mediators in pathophysiology.

作者信息

Deigner Hans-Peter, Hermetter Albin

机构信息

Department of Chemical Sciences and Pharmacy, University of East Anglia, Norwich, Norfolk, UK.

出版信息

Curr Opin Lipidol. 2008 Jun;19(3):289-94. doi: 10.1097/MOL.0b013e3282fe1d0e.

Abstract

PURPOSE OF REVIEW

Oxidized phospholipids are biologically active agents that are generated by lipid peroxidation. They are associated with inflammation, oxidative stress and several diseased states as described by an increasing number of reports. In addition, information about the interaction partners, the binding sites, the intracellular signalling and the metabolizing enzymes of these compounds is rapidly increasing. This review will briefly summarize recent findings and focus on mechanisms with potential pathophysiological relevance.

RECENT FINDINGS

Reports reviewed here provide interesting insights into the involvement of oxidized phospholipids in interleukin transcription, phenotype switching of smooth muscle cells and apoptotic mechanisms of the modified phospholipids as well as the identification of metabolizing enzymes.

SUMMARY

Recent studies shed some light on oxidized phospholipid-induced signalling with regard to apoptosis, gene expression and receptor-mediated events. They support the notion that the bioactivities of these natural agents detrimentally contribute to the pathological alteration of basic mechanisms to states recognized in numerous medical conditions. Advances in the knowledge of signalling pathways and interaction partners of oxidized phospholipids will increase our understanding of inflammatory processes and molecular mechanisms of various diseases including atherosclerosis and may play an important role in the development of future therapeutic options or diagnostics.

摘要

综述目的

氧化磷脂是由脂质过氧化产生的生物活性剂。越来越多的报告表明,它们与炎症、氧化应激及多种疾病状态相关。此外,关于这些化合物的相互作用伙伴、结合位点、细胞内信号传导及代谢酶的信息也在迅速增加。本综述将简要总结近期研究结果,并聚焦于具有潜在病理生理相关性的机制。

近期研究结果

本文所综述的报告为氧化磷脂参与白细胞介素转录、平滑肌细胞表型转换及修饰磷脂的凋亡机制以及代谢酶的鉴定提供了有趣的见解。

总结

近期研究在氧化磷脂诱导的凋亡、基因表达及受体介导事件的信号传导方面有所发现。这些研究支持了这样一种观点,即这些天然物质的生物活性有害地促成了多种医学病症中所公认状态下基本机制的病理改变。氧化磷脂信号传导途径及相互作用伙伴知识的进展将增进我们对包括动脉粥样硬化在内的各种疾病炎症过程及分子机制的理解,并可能在未来治疗方案或诊断方法的开发中发挥重要作用。

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