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5-脂氧合酶基因敲除小鼠和5-脂氧合酶抑制剂齐留通对内毒素血症所致多器官损伤和功能障碍的减轻作用。

Reduction of the multiple organ injury and dysfunction caused by endotoxemia in 5-lipoxygenase knockout mice and by the 5-lipoxygenase inhibitor zileuton.

作者信息

Collin Marika, Rossi Antonietta, Cuzzocrea Salvatore, Patel Nimesh S A, Di Paola Rosanna, Hadley Julia, Collino Massimo, Sautebin Lidia, Thiemermann Christoph

机构信息

Centre for Experimental Medicine, Nephrology and Critical Care, The William Harvey Research Institute, Queen Mary, University of London, UK.

出版信息

J Leukoc Biol. 2004 Nov;76(5):961-70. doi: 10.1189/jlb.0604338. Epub 2004 Aug 24.

Abstract

The role of 5-lipoxygenase (5-LOX) in the pathophysiology of the organ injury/dysfunction caused by endotoxin is not known. Here, we investigate the effects of treatment with 5-LOX inhibitor zileuton in rats and targeted disruption of the 5-LOX gene in mice (5-LOX(-/-)) on multiple organ injury/dysfunction caused by severe endotoxemia. We also investigate the expression of beta2-integrins CD11a/CD18 and CD11b/CD18 on rat leukocytes by flow cytometry. Zileuton [3 mg/kg intravenously (i.v.)] or vehicle (10% dimethyl sulfoxide) was administered to rats 15 min prior to lipopolysaccharide (LPS; Escherichia coli, 6 mg/kg i.v.) or vehicle (saline). 5-LOX(-/-) mice and wild-type littermate controls were treated with LPS (E. coli, 20 mg/kg intraperitoneally) or vehicle (saline). Endotoxemia for 6 h in rats or 16 h in mice resulted in liver injury/dysfunction (increase in the serum levels of aspartate aminotransferase, alanine aminotransferase, gamma-glutamyl transferase, alkaline phosphatase, bilirubin), renal dysfunction (creatinine), and pancreatic injury (lipase, amylase). Absence of functional 5-LOX (zileuton treatment or targeted disruption of the 5-LOX gene) reduced the multiple organ injury/dysfunction caused by endotoxemia. Polymorphonuclear leukocyte infiltration (myeloperoxidase activity) in the lung and ileum as well as pulmonary injury (histology) were markedly reduced in 5-LOX(-/-) mice. Zileuton also reduced the LPS-induced expression of CD11b/CD18 on rat leukocytes. We propose that endogenous 5-LOX metabolites enhance the degree of multiple organ injury/dysfunction caused by severe endotoxemia by promoting the expression of the adhesion molecule CD11b/CD18 and that inhibitors of 5-LOX may be useful in the therapy of the organ injury/dysfunction associated with endotoxic shock.

摘要

5-脂氧合酶(5-LOX)在由内毒素引起的器官损伤/功能障碍的病理生理学中的作用尚不清楚。在此,我们研究了用5-LOX抑制剂齐留通治疗大鼠以及在小鼠中靶向破坏5-LOX基因(5-LOX(-/-))对严重内毒素血症所致多器官损伤/功能障碍的影响。我们还通过流式细胞术研究了大鼠白细胞上β2整合素CD11a/CD18和CD11b/CD18的表达。在给予大鼠脂多糖(LPS;大肠杆菌,6 mg/kg静脉注射)或溶剂(生理盐水)前15分钟,静脉注射齐留通[3 mg/kg]或溶剂(10%二甲基亚砜)。用LPS(大肠杆菌,20 mg/kg腹腔注射)或溶剂(生理盐水)处理5-LOX(-/-)小鼠和野生型同窝对照。大鼠内毒素血症6小时或小鼠16小时导致肝损伤/功能障碍(血清天冬氨酸转氨酶、丙氨酸转氨酶、γ-谷氨酰转移酶、碱性磷酸酶、胆红素水平升高)、肾功能障碍(肌酐)和胰腺损伤(脂肪酶、淀粉酶)。缺乏功能性5-LOX(齐留通治疗或5-LOX基因靶向破坏)减轻了内毒素血症所致的多器官损伤/功能障碍。5-LOX(-/-)小鼠肺和回肠中的多形核白细胞浸润(髓过氧化物酶活性)以及肺损伤(组织学)明显减轻。齐留通还降低了LPS诱导的大鼠白细胞上CD11b/CD18的表达。我们提出,内源性5-LOX代谢产物通过促进黏附分子CD11b/CD18的表达来增强严重内毒素血症所致多器官损伤/功能障碍的程度,并且5-LOX抑制剂可能对治疗与内毒素休克相关的器官损伤/功能障碍有用。

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