Cassis L A, Stitzel R E, Head R J
J Pharmacol Exp Ther. 1985 Sep;234(3):792-803.
In the present studies we have established that the perfused caudal artery from spontaneously hypertensive (SH) rats responds to pharmacological and physiological stimuli in a manner similar to that described for other blood vessels from the SH rat. In addition, the responses of caudal arteries from SH rats to exogenous norepinephrine were similar to those of arteries removed from normotensive Kyoto Wistar rats. However, responses to sympathetic nerve stimulation at high, but not low, frequencies of stimulation were increased in arteries from the SH rat. In addition, impairment of neuronal uptake with cocaine unmasked a greater responsiveness of arteries from SH rats to sympathetic nerve stimulation. Consistent with the latter finding the neuronal uptake and neuronal deamination of norepinephrine was larger in caudal arteries from SH rats. A histofluorescent and electron microscopic analysis of the sympathetic innervation of caudal arteries from SH and Kyoto Wistar rats demonstrated that the vessels from SH animals had a greater number of nerve axon bundles and a greater area of adventitia occupied by nerve bundles. It is concluded that the ability of high rates of nerve stimulation and cocaine to unmask an enhanced responsiveness of caudal arteries from SH rats is related to an enhanced innervation of the artery. It is suggested that in the SH rat model of hypertension future research into the causes of the augmented blood pressure should be directed toward factors regulating the density of the sympathetic innervation of the vasculature.
在目前的研究中,我们已经证实,来自自发性高血压(SH)大鼠的灌注尾动脉对药理和生理刺激的反应方式,与SH大鼠其他血管的反应方式相似。此外,SH大鼠尾动脉对外源性去甲肾上腺素的反应,与从正常血压的京都Wistar大鼠取出的动脉的反应相似。然而,SH大鼠的动脉对高频而非低频交感神经刺激的反应增强。此外,可卡因对神经元摄取的损害揭示了SH大鼠的动脉对交感神经刺激有更大的反应性。与后一发现一致,SH大鼠尾动脉中去甲肾上腺素的神经元摄取和神经元脱氨基作用更大。对SH大鼠和京都Wistar大鼠尾动脉交感神经支配的组织荧光和电子显微镜分析表明,SH动物的血管有更多的神经轴突束,且神经束占据的外膜面积更大。得出的结论是,高频率神经刺激和可卡因揭示SH大鼠尾动脉增强反应性的能力,与动脉神经支配增强有关。建议在SH大鼠高血压模型中,未来对血压升高原因的研究应针对调节血管系统交感神经支配密度的因素。