Adrenergic innervation of blood vessels in Dahl rats with salt hypertension.

J Kunes, G R Leontjeva, E Bysková, I Pohlová, V A Govyrin, J Zicha
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引用次数: 8

Abstract

The adrenergic innervation of major arteries and veins was examined in Dahl salt-sensitive (DS) and salt-resistant (DR) rats using a histochemical fluorescent technique to detect the intraneuronal catecholamine content. Under the conditions of low salt intake the density of adrenergic plexus tended to be higher in DR than in DS rats. A decrease of catecholamine content with a subsequent reduction in the density of visible adrenergic plexus was observed in mesenteric and renal but not in femoral vascular beds of salt hypertensive DS rats. The adrenergic innervation was more altered in veins than in respective arteries. Pronounced alterations of vascular sympathetic innervation induced by high salt intake in DS rats contrasted with negligible changes occurring in DR animals. Observed changes of adrenergic innervation in particular vascular beds of salt hypertensive DS rats could reflect the enhanced catecholamine turnover and sympathetic hyperactivity which is important for the pathogenesis and/or maintenance of salt hypertension in Dahl salt-sensitive rats.
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盐性高血压大鼠血管的肾上腺素能神经支配。
采用组织化学荧光技术检测达尔盐敏感(DS)和耐盐(DR)大鼠神经元内儿茶酚胺的含量,观察大鼠大动脉和静脉的肾上腺素能神经支配。在低盐摄入条件下,DR大鼠肾上腺素能神经丛密度明显高于DS大鼠。在盐性高血压DS大鼠的肠系膜和肾血管床中观察到儿茶酚胺含量的降低和可见肾上腺素能丛密度的降低,但在股血管床中没有观察到。肾上腺素能神经支配在静脉中的改变大于相应的动脉。高盐摄入引起DS大鼠血管交感神经的明显改变,而DR动物的变化可以忽略不计。盐性高血压DS大鼠特定血管床肾上腺素能神经支配的变化反映了儿茶酚胺转换和交感神经亢进的增强,这对Dahl盐敏感大鼠盐性高血压的发病和/或维持具有重要意义。
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