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Decrease of nitric oxide and increase in diastolic blood pressure are two events that affect renal function in dogs with pituitary dependent hyperadrenocorticism

机译:一氧化氮降低和舒张压升高是影响垂体依赖性肾上腺皮质功能亢进的犬肾功能的两个事件

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摘要

Hyperadrenocorticism is a frequent disease in dogs. The excess of circulating cortisol affects different organs and metabolic pathways, producing severe adverse effects that endanger the animal’s life. Among these effects, hypertension and renal damage can be mentioned. A group of 20 dogs with pituitary dependent hyperadrenocorticism (PDH) and 12 control dogs were used to study the following parameters: cortisol and nitric oxide (NO nitit) concentrations, diastolic and systolic blood pressure, renal artery resistance index by Doppler ultrasound, the rate of glomerular filtration by radio-renogram excretion and the presence of proteins in urine. Dogs with PDH showed a significantly lower NO nitit (P<0.0001) than the controls and this correlated with high values of diastolic and systolic pressure (r = -0.87; P<0.0001 and r = -0.81; P<0.0001 respectively). Most dogs (80%) are hypertensive mainly due to an increase in diastolic pressure, which correlated positively with the UPC (r = 0.8; P<0.001) and negatively with the glomerular rate of filtration (r = -0.58; P=0.007). Systolic pressure only increased in 60% of the cases and did not correlate with the mentioned variables. In PDH the decrease of NO affects blood pressure. The diastolic pressure would seem to have the greatest impact on the kidneys, therefore its evaluation and control are important to avoid and/or control renal damage.
机译:高肾上腺皮质激素血症是犬的常见疾病。循环皮质醇的过量影响不同器官和代谢途径,产生严重的不良反应,危及动物的生命。在这些作用中,可以提及高血压和肾损害。一组20只垂体依赖型高肾上腺皮质激素(PDH)犬和12只对照犬用于研究以下参数:皮质醇和一氧化氮(NO nit / nit)浓度,舒张压和收缩压,多普勒超声检查肾动脉阻力指数,放射性肾图排泄的肾小球滤过率和尿液中蛋白质的存在。 PDH犬的NO尼特/尼特(P <0.0001)明显低于对照组,这与舒张压和收缩压的高值相关(r = -0.87; P <0.0001和r = -0.81; P <0.0001) 。大多数狗(80%)高血压,主要是由于舒张压升高,与UPC正相关(r = 0.8; P <0.001),与肾小球滤过率呈负相关(r = -0.58; P = 0.007) 。收缩压仅在60%的病例中增加,并且与上述变量无关。在PDH中,NO的减少会影响血压。舒张压似乎对肾脏有最大的影响,因此其评估和控制对于避免和/或控制肾脏损害很重要。

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