Mrsny Randall J, Gewirtz Andrew T, Siccardi Dario, Savidge Tor, Hurley Bryan P, Madara James L, McCormick Beth A
School of Pharmacy, Cardiff University, Redwood Building, King Edward VII Avenue, Cardiff, Wales CF10 3XF, United Kingdom.
Proc Natl Acad Sci U S A. 2004 May 11;101(19):7421-6. doi: 10.1073/pnas.0400832101. Epub 2004 May 3.
The mechanism by which neutrophils [polymorphonuclear leukocyte (PMNs)] are stimulated to move across epithelial barriers at mucosal surfaces has been basically unknown in biology. IL-8 has been shown to stimulate PMNs to leave the bloodstream at a local site of mucosal inflammation, but the chemical gradient used by PMNs to move between adjacent epithelial cells and traverse the tight junction at the apical neck of these mucosal barriers has eluded identification. Our studies not only identify this factor, previously termed pathogen-elicited epithelial chemoattractant, as the eicosanoid hepoxilin A(3) (hepA(3)) but also demonstrate that it is a key factor promoting the final step in PMN recruitment to sites of mucosal inflammation. We show that hepA(3) is synthesized by epithelial cells and secreted from their apical surface in response to conditions that stimulate inflammatory events. Our data further establish that hepA(3) acts to draw PMNs, via the establishment of a gradient across the epithelial tight junction complex. The functional significance of hepA(3) to target PMNs to the lumen of the gut at sites of inflammation was demonstrated by the finding that disruption of the 12-lipoxygenase pathway (required for hepA(3) production) could dramatically reduce PMN-mediated tissue trauma, demonstrating that hepA(3) is a key regulator of mucosal inflammation.
中性粒细胞[多形核白细胞(PMN)]被刺激穿过黏膜表面上皮屏障的机制在生物学上基本上是未知的。白细胞介素8已被证明可刺激PMN在黏膜炎症的局部部位离开血液循环,但PMN在相邻上皮细胞之间移动并穿过这些黏膜屏障顶端颈部紧密连接所利用的化学梯度尚未被识别。我们的研究不仅确定了这个以前被称为病原体诱导的上皮趋化因子的因子为类二十烷酸肝氧素A(3)(hepA(3)),还证明它是促进PMN募集到黏膜炎症部位最后一步的关键因子。我们表明hepA(3)由上皮细胞合成,并在刺激炎症事件的条件下从其顶端表面分泌。我们的数据进一步证实,hepA(3)通过在上皮紧密连接复合体上建立梯度来吸引PMN。通过发现破坏12-脂氧合酶途径(hepA(3)产生所必需的)可显著减少PMN介导的组织损伤,证明了hepA(3)对将PMN靶向炎症部位肠道管腔的功能意义,这表明hepA(3)是黏膜炎症的关键调节因子。