ACh dilates pial arterioles in endothelial and neuronal NOS knockout mice by NO-dependent mechanisms

被引:96
作者
Meng, W
Ma, JY
Ayata, C
Hara, H
Huang, PL
Fishman, MC
Moskowitz, MA
机构
[1] MASSACHUSETTS GEN HOSP, CARDIOVASC RES CTR, DEPT NEUROL & NEUROSURG, STROKE & NEUROVASC REGULAT LAB, CHARLESTOWN, MA 02129 USA
[2] MASSACHUSETTS GEN HOSP, DEPT MED, CHARLESTOWN, MA 02129 USA
[3] HARVARD UNIV, SCH MED, CHARLESTOWN, MA 02129 USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY | 1996年 / 271卷 / 03期
关键词
mutant mice; cerebral circulation;
D O I
10.1152/ajpheart.1996.271.3.H1145
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
We used mice with deletions in either the endothelial nitric oxide synthase (eNOS) or neuronal NOS (nNOS) gene to investigate the role of eNOS and nNOS in acetylcholine (ACh)-induced relaxation of pial arterioles (20-30 mu m). Pial arteriolar diameter was measured by intravital microscopy through a closed cranial window, and NOS activity was determined by the conversion of [H-3] arginine to [H-3]citrulline in subjacent cortex. ACh superfusion (1, 10 mu M) caused atropine-sensitive dose-dependent arteriolar dilation in all three mouse strains. At 10 mu M, increases of 20 +/- 2, 31 +/- 3, and 23 +/- 3 were recorded in wild-type (n = 25), nNOS mutant (n = 15), and eNOS mutant (n = 20) mice, respectively. N-G-nitro-L-arginine (L-NNA, 1 mM) superfusion inhibited cortical NOS activity by >70% and abrogated the response in wild-type mice while blocking the dilation by similar to 50% in eNOS mutant and nNOS mutant mice. Only in the eNOS mutant did tetrodotoxin (TTX) superfusion (1 mu M) attenuate ACh-induced dilation (n = 6). The residual dilation after L-NNA in eNOS mutant mice could be blocked completely by TTX plus L-NNA. Our findings indicate that 1) ACh dilates pial arterioles of wild-type mice by NOS-dependent mechanisms as reported in other species, 2) the response in nNOS mutant mice resembles the wild-type response except for enhanced dilation to ACh and reduced L-NNA sensitivity, and 3) surprisingly, the response in eNOS mutant mice is partially NOS dependent and attenuated by both TTX and L-NNA. Because nNOS is constitutively expressed in eNOS mutants, these findings coupled with the TTX results suggest that an nNOS-dependent mechanism may compensate for the chronic loss of eNOS activity after targeted gene disruption.
引用
收藏
页码:H1145 / H1150
页数:6
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