Regional cerebral blood flow response to vibrissal stimulation in mice lacking type I NOS gene expression

被引:108
作者
Ma, JY
Ayata, C
Huang, PL
Fishman, MC
Moskowitz, MA
机构
[1] HARVARD UNIV, MASSACHUSETTS GEN HOSP,SCH MED,NEUROSURG SERV, STROKE & NEUROVASC REGULAT LAB, BOSTON, MA 02114 USA
[2] HARVARD UNIV, MASSACHUSETTS GEN HOSP,SCH MED,DEPT SURG, NEUROL DEPT, BOSTON, MA 02114 USA
[3] HARVARD UNIV, MASSACHUSETTS GEN HOSP,SCH MED,MED SERV, CARDIOVASC RES CTR, BOSTON, MA 02114 USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY | 1996年 / 270卷 / 03期
关键词
nitric oxide; type I nitric oxide synthase; transgenic mice; whisker stimulation; N omega-nitro-L-arginine;
D O I
10.1152/ajpheart.1996.270.3.H1085
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
The role of nitric oxide (NO) in cerebral blood flow-metabolism coupling was assessed in SV-129 wild-type (WT) and neuronal (type I) NO synthase (NOS) knockout mice (Kn). Regional cerebral blood flow (rCBF; laser-Doppler flowmetry) was measured over the contralateral cortical barrel field during unilateral mechanical vibrissal deflection (2-3 Hz, 60 s) under urethan anesthesia. The rCBF response was similar in WT and Kn and did not differ when recorded over the intact skull or closed cranial window preparations. Whisker stimulation increased rCBF by 41 +/- 8% (maximum) and 27 +/- 6% (mean) in WT (n = 6) and 41 +/- 7% (maximum) and 26 +/- 6% (mean) in Kn (n = 6) when recorded through a closed cranial window. After superfusion with topical N-omega-nitro-L-arginine (L-NNA; 1 mM), the rCBF response was inhibited by similar to 45% in WT mice (P < 0.05), whereas there was no inhibition in Kn. Endothelium-dependent relaxation, assessed by pial vessel dilation in response to topical acetylcholine (100 mu M) and inhibition by L-NNA (1 mM), was the same in both groups. Our results suggest that 1) endothelial NO production does not mediate the rCBF coupling to neuronal activity in Kn, 2) the inhibitory effect of L-NNA on the rCBF response to whisker stimulation in WT is a consequence of type I (neuronal) NOS inhibition, and 3) NO-independent mechanisms couple rCBF and metabolism during whisker stimulation in mice lacking expression of neuronal NOS.
引用
收藏
页码:H1085 / H1090
页数:6
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