首页> 美国卫生研究院文献>American Journal of Physiology - Regulatory Integrative and Comparative Physiology >Hemodynamic and neural responses to renal denervation of the nerve to the clipped kidney by cryoablation in two-kidney one-clip hypertensive rats
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Hemodynamic and neural responses to renal denervation of the nerve to the clipped kidney by cryoablation in two-kidney one-clip hypertensive rats

机译:两肾一夹式高血压大鼠冷冻消融术对神经向肾脏的神经去神经作用的血液动力学和神经反应

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摘要

Renal artery stenosis is increasing in prevalence. Angioplasty plus stenting has not proven to be better than medical management. There has been a reluctance to use available denervation methodologies in this condition. We studied conscious, chronically instrumented, two-kidney, one-clip (2K-1C) Goldblatt rats, a model of renovascular hypertension, to test the hypothesis that renal denervation by cryoablation (cryo-DNX) of the renal nerve to the clipped kidney decreases mean arterial pressure (MAP), plasma and tissue ANG II, and contralateral renal sympathetic nerve activity (RSNA). Five-week-old male Sprague-Dawley rats underwent sham (ShC) or right renal artery clipping (2K-1C), placement of telemetry transmitters, and pair-feeding with a 0.4% NaCl diet. After 6 wk, rats were randomly assigned to cryo-DNX or sham cryotreatment (sham DNX) of the renal nerve to the clipped kidney. MAP was elevated in 2K-1C and decreased significantly in both ShC cryo-DNX and 2K-1C cryo-DNX. Tissue norepinephrine was ∼85% lower in cryo-DNX kidneys. Plasma ANG II was higher in 2K-1C sham DNX but not in 2K-1C cryo-DNX vs ShC. Renal tissue ANG II in the clipped kidney decreased after cryo-DNX. Baseline integrated RSNA of the unclipped kidney was threefold higher in 2K-1C versus ShC and decreased in 2K-1C cryo-DNX to values similar to ShC. Maximum reflex response of RSNA to baroreceptor unloading in 2K-1C was lower after cryo-DNX. Thus, denervation by cryoablation of the renal nerve to the clipped kidney decreases not only MAP but also plasma and renal tissue ANG II levels and RSNA to the contralateral kidney in conscious, freely moving 2K-1C rats.
机译:肾动脉狭窄的患病率正在增加。血管成形术和支架置入术尚未被证明比医学治疗更好。在这种情况下,不愿使用可用的去神经方法。我们研究了有意识的,长期使用的,两肾一夹(2K-1C)Goldblatt大鼠(一种肾血管性高血压的模型),以检验以下假设:通过冷冻消融术(cryo-DNX)将肾神经切除的肾脏去神经降低平均动脉压(MAP),血浆和组织ANG II以及对侧肾交感神经活动(RSNA)。对五周大的雄性Sprague-Dawley大鼠进行假手术(ShC)或右肾动脉截断(2K-1C),放置遥测变送器,并以0.4%NaCl饮食配对喂养。 6周后,将大鼠随机分配至肾脏神经的低温DNX或假冷冻治疗(sham DNX)。 MAP在2K-1C中升高,在ShC cryo-DNX和2K-1C cryo-DNX中均显着降低。在冷冻DNX肾脏中,组织去甲肾上腺素降低了约85%。与ShC相比,在2K-1C假DNX中血浆ANG II更高,但在2K-1C cryo-DNX中没有。冷冻-DNX后,被夹肾脏中的肾组织ANG II减少。在2K-1C中,未切除肾脏的基线综合RSNA比ShC高三倍,而在2K-1C cryo-DNX中则降低至与ShC相似的值。冷冻DNX后,RSNA对2K-1C中压力感受器卸载的最大反射反应较低。因此,在有意识的,自由移动的2K-1C大鼠中,通过冷冻消融肾神经至修剪的肾脏去神经不仅降低了MAP,而且降低了血浆和肾组织ANG II水平以及对侧肾脏的RSNA。

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