Cardiovascular Research Center, Prague, Czech Republic.
J Physiol Pharmacol. 2009 Dec;60(4):21-5.
The goal of our study was to determine a contribution of nNOS to the increase of brain NO synthase activity induced by chronic N-acetylcysteine (NAC) treatment. Young 4-week-old male Wistar Kyoto rats (WKY) and spontaneously hypertensive rats (SHR) were subjected to treatment with NAC (1.5 g/kg/day) for 8 weeks. At the end of experiment total NOS activity was determined in the brainstem and cerebellum with and without specific nNOS inhibitor S-methyl-L-thiocitrulline (SMTC, 10(-6) mol/l) by measuring the formation of L-[(3)H] citrulline from L-[(3)H] arginine. Chronic NAC treatment had no effect on blood pressure (BP) of WKY, while it attenuated BP increase in young SHR. Total NOS activity was increased in the brainstem of SHR compared to WKY, but this strain difference was abolished by SMTC. Chronic NAC treatment of SHR increased total NOS activity by 32% in the brainstem and by 67% in the cerebellum. After the incubation of brainstem and cerebellum with SMTC there were no significant differences in NOS activity of NAC-treated rats compared to strain-matched controls. Taken together, nNOS seems to be responsible for the increase of total NOS activity in the brain of SHR. SMTC inhibited 86% and 70% of NAC-induced increase of total NOS activity in the brainstem and cerebellum, respectively. Thus, nNOS is responsible not only for strain differences but also for NAC-induced increase of total NOS activity in the brain.
我们研究的目的是确定 nNOS 在慢性 N-乙酰半胱氨酸 (NAC) 治疗诱导的大脑 NO 合酶活性增加中的作用。年轻的 4 周龄雄性 Wistar 京都大鼠 (WKY) 和自发性高血压大鼠 (SHR) 接受 NAC (1.5 g/kg/天) 治疗 8 周。在实验结束时,通过测量 L-[(3)H]精氨酸形成 L-[(3)H]瓜氨酸,在脑干和小脑测定有和没有特定 nNOS 抑制剂 S-甲基-L-硫代瓜氨酸 (SMTC,10(-6) mol/l) 时的总 NOS 活性。慢性 NAC 治疗对 WKY 的血压没有影响,但减轻了年轻 SHR 的血压升高。与 WKY 相比,SHR 的脑干总 NOS 活性增加,但这种品系差异被 SMTC 消除。慢性 NAC 治疗 SHR 使脑干的总 NOS 活性增加 32%,小脑的总 NOS 活性增加 67%。在将脑干和小脑用 SMTC 孵育后,与品系匹配的对照相比,NAC 处理的大鼠的 NOS 活性没有显著差异。总之,nNOS 似乎负责 SHR 大脑中总 NOS 活性的增加。SMTC 分别抑制 NAC 诱导的脑干和小脑总 NOS 活性增加的 86%和 70%。因此,nNOS 不仅负责品系差异,还负责 NAC 诱导的大脑总 NOS 活性增加。