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首页> 外文期刊>The Journal of Experimental Biology >EFFECTS OF INHIBITION OF NITRIC OXIDE SYNTHESIS AND OF HYPERCAPNIA ON BLOOD PRESSURE AND BRAIN BLOOD FLOW IN THE TURTLE
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EFFECTS OF INHIBITION OF NITRIC OXIDE SYNTHESIS AND OF HYPERCAPNIA ON BLOOD PRESSURE AND BRAIN BLOOD FLOW IN THE TURTLE

机译:抑制一氧化氮和高碳酸血症对乌龟血压和脑血流量的影响

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In the mammalian brain, nitric oxide (NO) is responsible for a vasodilatory tonus as well as the elevation of cerebral blood flow (CBF) induced by hypercapnia, There have been few comparative studies of cerebral vasoregulation in lower vertebrates, Using epi-illumination microscopy in vivo to observe CBF velocity on the brain surface (cerebral cortex), we show that turtles (Trachemys scripta) exposed to hypercapnia (inspired P-CO2=4.9 kPa) displayed a 62 % increase in CBF velocity, while systemic blood pressure remains constant, Exposing turtles to a P-CO2 of 14.9 kPa caused an additional increase in CBF velocity, to 104 % above control values, as well as a 30 % increase in systemic blood pressure. The elevated CBF velocity during hypercapnia could not be blocked by a systemic injection of the NO synthase (NOS) inhibitor NG-nitro-L-arginine (L-NA), However, L-NA injection caused a temporary stop in CBF as well as a persistent increase in systemic blood pressure, suggesting that there is a NO tonus that is attenuated by the NOS-inhibitor and that CBF is strongly dependent on this tonus, although compensatory mechanisms exist, Thus, although the cerebrovascular reaction to hypercapnia appeared to be NO-independent, the results suggest that there is a NO-dependent vasodilatory tonus affecting both cerebral and systemic blood circulation in this species. [References: 35]
机译:在哺乳动物的大脑中,一氧化氮(NO)引起血管紧张性张力以及由高碳酸血症引起的脑血流量(CBF)升高。利用落射照明显微镜对下层脊椎动物脑血管调节的比较研究很少。体内观察脑表面(大脑皮层)的CBF速度,我们发现暴露于高碳酸血症(吸入的P-CO2 = 4.9 kPa)的海龟(Trachemys scripta)显示出CBF速度增加了62%,而系统性血压保持恒定,将海龟暴露于14.9 kPa的P-CO2中会导致CBF速度进一步增加,达到控制值以上104%,并且全身血压增加30%。全身性注射NO合酶(NOS)抑制剂NG-硝基-L-精氨酸(L-NA)不能阻止高碳酸血症期间CBF速度的升高,但是,L-NA注射导致CBF的暂时性停止以及持续升高的系统性血压,表明存在NOS抑制剂减弱的NO张力,尽管存在补偿机制,但CBF强烈依赖于此TONUS,因此,尽管对高碳酸血症的脑血管反应似乎是NO -独立,结果表明,有一个NO依赖的血管舒张张力影响该物种的大脑和全身的血液循环。 [参考:35]

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