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不饱和脂肪酸及其单羟基代谢产物的促炎特性。

Proinflammatory properties of unsaturated fatty acids and their monohydroxy metabolites.

作者信息

Cunningham F M, Woollard P M, Camp R D

出版信息

Prostaglandins. 1985 Sep;30(3):497-509. doi: 10.1016/0090-6980(85)90122-4.

Abstract

The proinflammatory effects of unsaturated fatty acids and, where appropriate, their monohydroxy derivatives, have been investigated both by application to human skin and with respect to human polymorphonuclear leukocyte (PMN) migration. Of the fatty acids applied to the skin only eicosapentaenoic and arachidonic acids (EPA; AA) produced consistent, measurable erythema. The monohydroxy derivatives of the two fatty acids also caused erythema, the 12-hydroxy isomers being the most potent. Chemokinetic activity towards PMNs was observed in the presence of AA, EPA and alpha-linolenic acid using an agarose microdroplet chemokinesis assay. In contrast to their in vivo properties, the 5-hydroxy isomers of AA and EPA were the most potent, being approximately 10 times more chemokinetically active than the other isomers. Quantification of the hydroxyeicosatetraenoic and hydroxyeicosapentaenoic acids (HETEs; HEPEs) in the lesional skin of psoriatic patients demonstrated that, of the metabolites measured, 12-HETE was present in the greatest amounts. Twenty five times more 12-HETE than 12- or 15-HEPE was detected, these being the most abundant of the HEPEs formed. The monohydroxy derivatives of AA and EPA may contribute to the inflammatory changes observed in psoriasis. The HETEs appear to be of greater importance than the HEPEs in view of the relative amounts present.

摘要

不饱和脂肪酸及其单羟基衍生物(如适用)的促炎作用,已通过应用于人体皮肤以及关于人多形核白细胞(PMN)迁移的研究进行了调查。在应用于皮肤的脂肪酸中,只有二十碳五烯酸和花生四烯酸(EPA;AA)产生了持续且可测量的红斑。这两种脂肪酸的单羟基衍生物也会引起红斑,其中12 - 羟基异构体最为有效。使用琼脂糖微滴趋化试验,在存在AA、EPA和α - 亚麻酸的情况下观察到了对PMN的化学趋化活性。与它们的体内特性相反,AA和EPA的5 - 羟基异构体最为有效,其化学趋化活性比其他异构体高约10倍。对银屑病患者皮损皮肤中羟基二十碳四烯酸和羟基二十碳五烯酸(HETEs;HEPEs)的定量分析表明,在所测量的代谢产物中,12 - HETE的含量最高。检测到的12 - HETE比12 - 或15 - HEPE多25倍,而12 - 和15 - HEPE是形成的最丰富的HEPEs。AA和EPA的单羟基衍生物可能导致银屑病中观察到的炎症变化。鉴于它们的相对含量,HETEs似乎比HEPEs更为重要。

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