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乳糖基神经酰胺刺激人中性粒细胞上调巨噬细胞-1,黏附于内皮细胞,并在体外产生活性氧代谢产物。

Lactosylceramide stimulates human neutrophils to upregulate Mac-1, adhere to endothelium, and generate reactive oxygen metabolites in vitro.

作者信息

Arai T, Bhunia A K, Chatterjee S, Bulkley G B

机构信息

Department of Surgery, The Johns Hopkins University School of Medicine, Baltimore, MD 21287-4685, USA.

出版信息

Circ Res. 1998 Mar 23;82(5):540-7. doi: 10.1161/01.res.82.5.540.

Abstract

Glycosphingolipids (GSLs) and their metabolites play important roles in a variety of biological processes. We have previously reported that lactosylceramide (LacCer), a ubiquitous GSL, stimulates NADPH oxidase-dependent superoxide generation by aortic smooth muscle cells and their consequent proliferation. We postulated that LacCer may upregulate adhesion molecules on human polymorphonuclear leukocytes (hPMNs), perhaps also via NADPH oxidase-dependent reactive oxygen metabolite (ROM) generation. Incubation of hPMNs with LacCer upregulated CD11b/CD18 (Mac-1) and CD11c/CD18, as determined by fluorescence-automated cell sorting. LacCer also stimulated these hPMNs to generate superoxide via NADPH oxidase, as determined by lucigenin-enhanced chemiluminescence. However, the upregulation of Mac-1 by LacCer did not itself appear to be mediated by ROMs, since neither an antioxidant nor an NADPH oxidase inhibitor substantially inhibited the Mac-1 upregulation. However, this Mac-1 upregulation was significantly inhibited by two disparate phospholipase A2 (PLA2) inhibitors. Moreover, LacCer induced arachidonic acid metabolism, which was inhibited by the PLA2 inhibitors, but not by an NADPH oxidase inhibitor. To evaluate the effect of LacCer on hPMN adhesion to endothelium, hPMNs stimulated with LacCer were allowed to adhere to unstimulated human endothelial cell monolayers. LacCer stimulated hPMN adhesion to endothelial cells, which was blocked by anti-CD18 and by the PLA2 inhibitors. We conclude that LacCer stimulates both Mac-1 upregulation and superoxide generation in hPMNs but that ROMs are not the upstream signal for Mac-1 upregulation. This mechanism may well be relevant to acute endothelial injury in inflammation and other pathological conditions.

摘要

糖鞘脂(GSLs)及其代谢产物在多种生物学过程中发挥重要作用。我们之前报道过,乳糖神经酰胺(LacCer)作为一种普遍存在的GSL,可刺激主动脉平滑肌细胞产生依赖烟酰胺腺嘌呤二核苷酸磷酸(NADPH)氧化酶的超氧化物,并导致其增殖。我们推测,LacCer可能上调人多形核白细胞(hPMNs)上的黏附分子,或许也是通过依赖NADPH氧化酶的活性氧代谢产物(ROM)生成来实现的。通过荧光自动细胞分选测定,用LacCer孵育hPMNs可上调CD11b/CD18(Mac-1)和CD11c/CD18。通过光泽精增强化学发光测定,LacCer还可刺激这些hPMNs通过NADPH氧化酶产生超氧化物。然而,LacCer对Mac-1的上调本身似乎并非由ROM介导,因为抗氧化剂和NADPH氧化酶抑制剂均未显著抑制Mac-1的上调。然而,两种不同的磷脂酶A2(PLA2)抑制剂可显著抑制这种Mac-1的上调。此外,LacCer诱导花生四烯酸代谢,该代谢被PLA2抑制剂抑制,但未被NADPH氧化酶抑制剂抑制。为了评估LacCer对hPMNs黏附内皮的影响,用LacCer刺激的hPMNs被允许黏附于未刺激的人内皮细胞单层。LacCer刺激hPMNs黏附于内皮细胞,这被抗CD18抗体和PLA2抑制剂阻断。我们得出结论,LacCer刺激hPMNs中Mac-1的上调和超氧化物的产生,但ROM并非Mac-1上调的上游信号。这种机制很可能与炎症及其他病理状况下的急性内皮损伤有关。

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