Kobari M, Fukuuchi Y, Tomita M, Tanahashi N, Takeda H
Department of Neurology, School of Medicine, Keio University, Tokyo, Japan.
Brain Res. 1994 Dec 26;667(2):255-62. doi: 10.1016/0006-8993(94)91503-2.
The role of nitric oxide in the regulation of cerebrocortical microvascular tone and autoregulation of cerebral blood flow (CBF) was examined in 24 anesthetized cats. The local cerebral blood volume (CBV), mean transit time of blood (MTT), and CBF in the cortex were measured by our photoelectric method. CBV represents the cumulative dimensions of the cerebral microvessels. Intravenous injection of 0.35-0.7 mg/kg/min NG-monomethyl-L-arginine (L-NMMA), an inhibitor of nitric oxide synthesis, significantly increased mean arterial blood pressure (MABP; 8.4-14.1%, P < 0.01), decreased CBV (15.2-28.7%, P < 0.01), and decreased CBF (20.0-29.8%, P < 0.01) in a dose-related manner. The changes in MABP, CBV, and CBF elicited by L-NMMA were inhibited (P < 0.05) by simultaneous infusion of 35 mg/kg/min L-arginine. Autoregulation of CBF was examined during controlled hypotension of -30 to -40 mmHg (artificial bleeding) and recovery of blood pressure (reinfusion of blood). Although CBF remained constant with blood pressure changes in the control state (delta CBF/delta MABP of 0.037 +/- 0.155 with hypotension), CBF became dependent on blood pressure changes (delta CBF/delta MABP of 0.478 +/- 0.135, P < 0.05) during infusion of 0.35 mg/kg/min L-NMMA. It is concluded that nitric oxide participates in both the regulation of basal tone of cerebral microvessels and the autoregulation of CBF.
在24只麻醉猫身上研究了一氧化氮在调节大脑皮质微血管张力和脑血流(CBF)自动调节中的作用。采用我们的光电方法测量皮质的局部脑血容量(CBV)、平均血流通过时间(MTT)和CBF。CBV代表脑微血管的累积尺寸。静脉注射0.35 - 0.7mg/kg/min的NG-单甲基-L-精氨酸(L-NMMA),一种一氧化氮合成抑制剂,以剂量相关的方式显著增加平均动脉血压(MABP;8.4 - 14.1%,P < 0.01),降低CBV(15.2 - 28.7%,P < 0.01),并降低CBF(20.0 - 29.8%,P < 0.01)。同时输注35mg/kg/min的L-精氨酸可抑制L-NMMA引起的MABP、CBV和CBF的变化(P < 0.05)。在将血压控制在-30至-40mmHg的低血压状态(人工放血)及血压恢复(回输血液)过程中研究了CBF的自动调节。尽管在对照状态下CBF随血压变化保持恒定(低血压时CBF/MABP的变化率为0.037±0.155),但在输注0.35mg/kg/min L-NMMA期间,CBF变得依赖于血压变化(CBF/MABP的变化率为0.478±0.135,P < 0.05)。得出的结论是,一氧化氮参与大脑微血管基础张力的调节以及CBF的自动调节。