Freigang Stefan
Institute of Pathology, University of Bern, Bern, Switzerland.
Eur J Immunol. 2016 Aug;46(8):1818-25. doi: 10.1002/eji.201545676. Epub 2016 Jul 14.
During inflammation or under conditions of oxidative stress, the polyunsaturated fatty acid side chains of phospholipids in cellular membranes or lipoproteins can be oxidatively modified. This process generates a complex mixture of structurally diverse oxidized phospholipid (OxPL) species, each of which may exert distinct biological effects. The presence of OxPLs has been documented in acute and chronic microbial infections, metabolic disorders, and degenerative diseases. It is now well recognized that OxPLs actively influence biological processes and contribute to the induction and resolution of inflammation. While many pro- and anti-inflammatory effects have been documented for bulk OxPL preparations, we are only beginning to understand the exact molecular mechanisms and signaling events that mediate the individual proinflammatory or anti-inflammatory bioactivities of discrete isolated OxPL species. Here, we review the current knowledge on the regulation of inflammation by OxPLs and summarize recent studies that establish cyclopentenone-containing OxPLs as a category of potent anti-inflammatory lipid mediators.
在炎症期间或氧化应激条件下,细胞膜或脂蛋白中磷脂的多不饱和脂肪酸侧链可被氧化修饰。这一过程产生了结构多样的氧化磷脂(OxPL)种类的复杂混合物,每种氧化磷脂可能发挥不同的生物学效应。OxPLs已在急性和慢性微生物感染、代谢紊乱及退行性疾病中被证实存在。现在人们已经充分认识到,OxPLs积极影响生物学过程,并有助于炎症的诱导和消退。虽然大量OxPL制剂的许多促炎和抗炎作用已被记录,但我们才刚刚开始了解介导离散分离的OxPL种类的个体促炎或抗炎生物活性的确切分子机制和信号事件。在此,我们综述了关于OxPLs调节炎症的当前知识,并总结了最近的研究,这些研究将含环戊烯酮的OxPLs确立为一类强效抗炎脂质介质。