Adler K B, Holden-Stauffer W J, Repine J E
Department of Anatomy, Physiological Sciences, and Radiology, College of Veterinary Medicine, North Carolina State University, Raleigh 27606.
J Clin Invest. 1990 Jan;85(1):75-85. doi: 10.1172/JCI114436.
Several common pulmonary disorders characterized by mucus hypersecretion and airway obstruction may relate to increased levels of inhaled or endogenously generated oxidants (O2 metabolites) in the respiratory tract. We found that O2 metabolites stimulated release of high-molecular-weight glycoconjugates (HMG) by respiratory epithelial cells in vitro through a mechanism involving cyclooxygenase metabolism of arachidonic acid. Noncytolytic concentrations of chemically generated O2 metabolites (purine + xanthine oxidase) stimulated HMG release by cell and explant cultures of rodent airway epithelium, an effect which is inhibitable by coaddition of specific O2 metabolite scavengers or inhibitors of arachidonic acid metabolism. Addition of O2 metabolites to epithelial cells provoked production of PGF2a, an effect also inhibitable by coaddition of O2 metabolite scavengers or inhibitors of arachidonic acid metabolism. Finally, addition of exogenous PGF2a to cell cultures stimulated HMG release. We conclude that O2 metabolites increase release of respiratory HMG through a mechanism involving cyclooxygenase metabolism of arachidonic acid with production mainly of PGF2a. This mechanism may be fundamental to the pathogenesis of a variety of lung diseases associated with hypersecretion of mucus and/or other epithelial fluids, as well as a basic cellular response to increased oxidants.
几种以黏液分泌过多和气道阻塞为特征的常见肺部疾病,可能与呼吸道中吸入性或内源性生成的氧化剂(O2代谢产物)水平升高有关。我们发现,O2代谢产物在体外通过一种涉及花生四烯酸环氧化酶代谢的机制,刺激呼吸道上皮细胞释放高分子量糖缀合物(HMG)。化学生成的O2代谢产物(嘌呤+黄嘌呤氧化酶)的非细胞溶解浓度刺激啮齿动物气道上皮细胞和外植体培养物释放HMG,这一效应可通过同时添加特定的O2代谢产物清除剂或花生四烯酸代谢抑制剂来抑制。向上皮细胞中添加O2代谢产物可引发PGF2α的产生,这一效应同样可通过同时添加O2代谢产物清除剂或花生四烯酸代谢抑制剂来抑制。最后,向外植体培养物中添加外源性PGF2α可刺激HMG释放。我们得出结论,O2代谢产物通过一种涉及花生四烯酸环氧化酶代谢且主要产生PGF2α的机制,增加呼吸道HMG的释放。这一机制可能是多种与黏液和/或其他上皮液分泌过多相关的肺部疾病发病机制的基础,也是细胞对氧化剂增加的一种基本反应。