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白塞病中的一氧化氮水平。

Nitric oxide levels in Behçet's disease.

作者信息

Sancak B, Onder M, Oztas M O, Bukan N, Gürer M A

机构信息

Gazi University Faculty of Medicine, Department of Biochemistry, Ankara, Turkey.

出版信息

J Eur Acad Dermatol Venereol. 2003 Jan;17(1):7-9. doi: 10.1046/j.1468-3083.2003.t01-1-00574.x.

Abstract

Behçet's disease (BD) is a chronic multisystemic disorder which is characterized by a relapsing systemic inflammatory process. In certain inflammatory conditions such as rheumatoid arthritis, over production of nitric oxide (NO) could damage host cells and tissues, either directly and/or following reaction with other free radicals, such as superoxide anion to form species including peroxynitrite or hydroxyl radicals. Excessive superoxide radical production and impaired antioxidant mechanism in both the neutrophils and plasma of patients with BD have been reported. Our study was designed to investigate the role of NO in BD. NO is an extremely unstable molecule and rapidly converted in vivo and in vitro to nitrate (NO3-) and nitrite (NO2-). For this reason serum NO2- and NO3- have been used as an index of NO generation. We measured serum nitrate + nitrite levels, by using an enzymatic one-step methodology based on the reduction of nitrate to nitrite by nitrate reductase from Aspergillus species, in the presence of beta-NADPH. When compared to healthy controls, serum nitrate + nitrite levels were found to be higher in active periods of BD patients (P < 0.01). It was concluded that increased NO production in patients with BD might have critical biological activities relevant to vasculitic events in the active period of disease.

摘要

白塞病(BD)是一种慢性多系统疾病,其特征为复发性全身炎症过程。在某些炎症性疾病如类风湿关节炎中,一氧化氮(NO)的过度产生会直接和/或与其他自由基(如超氧阴离子)反应形成包括过氧亚硝酸盐或羟基自由基等物质,从而损害宿主细胞和组织。已有报道称,BD患者的中性粒细胞和血浆中均存在超氧自由基产生过多以及抗氧化机制受损的情况。我们的研究旨在探讨NO在BD中的作用。NO是一种极不稳定的分子,在体内和体外都会迅速转化为硝酸盐(NO3-)和亚硝酸盐(NO2-)。因此,血清中的NO2-和NO3-已被用作NO生成的指标。我们采用基于曲霉菌属硝酸盐还原酶在β-NADPH存在下将硝酸盐还原为亚硝酸盐的酶促一步法,测定血清硝酸盐+亚硝酸盐水平。与健康对照组相比,BD患者活动期的血清硝酸盐+亚硝酸盐水平更高(P < 0.01)。得出的结论是,BD患者体内NO生成增加可能在疾病活动期与血管炎事件相关的关键生物学活性中发挥作用。

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