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一氧化氮不介导小动脉对氧的反应性。

Nitric oxide does not mediate arteriolar oxygen reactivity.

作者信息

Jackson W F

机构信息

Department of Biological Sciences, College of Arts and Sciences, Western Michigan University, Kalamazoo 49008.

出版信息

Microcirc Endothelium Lymphatics. 1991;7(4-6):199-215.

PMID:1815105
Abstract

Endothelium-derived relaxing factor, which is believed to be nitric oxide (NO), mediates vasodilation of arteries perfused with hypoxic solutions. The purpose of the present study was to determine if NO mediates the response of arterioles in the hamster cheek pouch to changes in superfusion solution PO2. This was accomplished by comparison of constriction of fourth order arterioles to increases in superfusate PO2 before and during superfusion with NG-nitro-L-arginine (L-NAG), a stereospecific inhibitor of NO synthesis. The efficacy of L-NAG was assessed by comparison of dilations induced by topical application of methacholine (MCH), an endothelium-dependent vasodilator. We found that 10-15 min superfusion with 30 microM L-NAG significantly inhibited MCH-induced arteriolar dilation. However, this concentration of L-NAG had no significant effect on resting arteriolar diameters, O2-induced constrictions, constrictions induced by phenylephrine or dilations induced by sodium nitroprusside (SNP). Increasing the concentration of L-NAG to 100 microM similarly inhibited MCH-induced dilations, but did not affect SNP reactivity and may have increased vasoconstriction induced by O2. Thus, effective inhibition of NO synthesis in the hamster cheek pouch does not inhibit responses to elevated oxygen. Therefore NO does not mediate arteriolar O2 reactivity in this tissue. Furthermore, there is little evidence for tonic modulation of arteriolar reactivity by NO in the microvessels observed in this study.

摘要

内皮源性舒张因子,据信为一氧化氮(NO),介导了用缺氧溶液灌注的动脉的血管舒张。本研究的目的是确定NO是否介导仓鼠颊囊中小动脉对灌注液PO2变化的反应。这是通过比较在使用NO合成的立体特异性抑制剂NG-硝基-L-精氨酸(L-NAG)灌注之前和期间,四级小动脉对灌注液PO2升高的收缩情况来实现的。通过比较局部应用乙酰甲胆碱(MCH,一种内皮依赖性血管舒张剂)诱导的舒张情况来评估L-NAG的功效。我们发现,用30 microM L-NAG灌注10 - 15分钟可显著抑制MCH诱导的小动脉舒张。然而,这种浓度的L-NAG对静息小动脉直径、O2诱导的收缩、去氧肾上腺素诱导的收缩或硝普钠(SNP)诱导的舒张均无显著影响。将L-NAG浓度增加到100 microM同样抑制了MCH诱导的舒张,但不影响SNP反应性,并且可能增加了O2诱导的血管收缩。因此,在仓鼠颊囊中有效抑制NO合成并不抑制对升高氧的反应。所以,在该组织中NO不介导小动脉对O2的反应性。此外,在本研究中观察到的微血管中,几乎没有证据表明NO对小动脉反应性有紧张性调节作用。

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