Badr K F
Division of Nephrology, Vanderbilt University, Nashville, Tennessee.
Kidney Int Suppl. 1992 Oct;38:S101-8.
In the first few hours following immune complex deposition and complement-mediated neutrophil (PMN) infiltration, glomerular generation rates of the arachidonate 5-lipoxygenase (5-LO) derivatives leukotrienes (LT) C4, D4, and B4 are stimulated markedly. These LTs exert effects on glomerular functions which include reduction in the glomerular ultrafiltration coefficient and glomerular filtration rates, exacerbation of proteinuria, and amplification of PMN-provoked glomerular damage through LTB4-induced PMN chemotaxis, adhesion, and activation. Following this early burst, glomerular LT synthesis is suppressed, macrophages replace PMNs, and glomerular generation of 15-S-hydroxyeicosatetraenoic acid [15-(S)-HETE], a 15-lipoxygenase derivative of arachidonic acid and a precursor molecule for lipoxin (LX) biosynthesis, increases progressively over the ensuing days to weeks. Here, we summarize evidence supporting the notion that the activation of the 15-LO pathway in the wake of early 5-LO activity is a specific counter-inflammatory signal which limits and antagonizes the proinflammatory actions of leukotrienes.
在免疫复合物沉积和补体介导的中性粒细胞(PMN)浸润后的最初几个小时内,花生四烯酸5-脂氧合酶(5-LO)衍生物白三烯(LT)C4、D4和B4的肾小球生成率受到显著刺激。这些白三烯对肾小球功能产生影响,包括降低肾小球超滤系数和肾小球滤过率、加重蛋白尿,以及通过LTB4诱导的PMN趋化、黏附和活化加剧PMN引发的肾小球损伤。在这一早期爆发之后,肾小球LT合成受到抑制,巨噬细胞取代PMN,并且花生四烯酸的15-脂氧合酶衍生物15-S-羟基二十碳四烯酸[15-(S)-HETE](脂oxin(LX)生物合成的前体分子)的肾小球生成在随后的数天至数周内逐渐增加。在此,我们总结支持以下观点的证据:早期5-LO活性之后15-LO途径的激活是一种特异性的抗炎信号,它限制并拮抗白三烯的促炎作用。