Kumagai K, Suzuki H, Ichikawa M, Jimbo M, Murakami M, Ryuzaki M, Saruta T
Department of Internal Medicine, School of Medicine, Keio University, Tokyo, Japan.
Hypertension. 1994 Aug;24(2):220-6. doi: 10.1161/01.hyp.24.2.220.
To investigate whether changes in renal blood flow induced by nondepressor doses of L-arginine, the precursor of nitric oxide, are mediated by a sympathetic neural mechanism, we examined the following in conscious rabbits: (1) the effects of intravenous infusion of L- or D-arginine (15 to 200 mumol/kg per minute) on renal blood flow and renal sympathetic nerve activity with or without intravenous infusion of a nonpressor dose of NG-monomethyl-L-arginine (L-NMMA), a nitric oxide synthase inhibitor, and (2) the effects of L-arginine on renal blood flow after renal denervation with or without L-NMMA pretreatment. In renal innervated rabbits, L-arginine (100 and 200 mumol/kg per minute) increased renal blood flow by 9 +/- 2 and 16 +/- 3 mL/min (P < .05, respectively) and decreased renal sympathetic nerve activity by 12 +/- 4% and 19 +/- 3% of control (P < .05, respectively). In contrast, no changes occurred in any variable during D-arginine infusion. L-NMMA attenuated the renal blood flow and renal sympathetic nerve activity responses to L-arginine (P < .05). In renal denervated rabbits, L-NMMA also attenuated the renal blood flow responses to L-arginine (P < .05) and abolished them (P < .05) compared with those in renal innervated rabbits. All renal blood flow responses to L-arginine were accompanied by parallel changes in plasma L-citrulline concentration.(ABSTRACT TRUNCATED AT 250 WORDS)
为研究一氧化氮前体非降压剂量的L-精氨酸所诱导的肾血流量变化是否由交感神经机制介导,我们在清醒兔中进行了以下实验:(1)静脉输注L-或D-精氨酸(15至200 μmol/kg每分钟)对肾血流量和肾交感神经活动的影响,同时或不同时静脉输注非降压剂量的一氧化氮合酶抑制剂NG-单甲基-L-精氨酸(L-NMMA);(2)肾去神经支配后,同时或不同时进行L-NMMA预处理,L-精氨酸对肾血流量的影响。在有肾神经支配的兔中,L-精氨酸(100和200 μmol/kg每分钟)使肾血流量分别增加9±2和16±3 mL/分钟(P均<.05),并使肾交感神经活动分别降低至对照的12±4%和19±3%(P均<.05)。相比之下,输注D-精氨酸期间任何变量均无变化。L-NMMA减弱了对L-精氨酸的肾血流量和肾交感神经活动反应(P<.05)。在肾去神经支配的兔中,与有肾神经支配的兔相比,L-NMMA也减弱了对L-精氨酸的肾血流量反应(P<.05)并使其消失(P<.05)。所有对L-精氨酸的肾血流量反应均伴有血浆L-瓜氨酸浓度的平行变化。(摘要截断于250字)