McCarty R, Cierpial M A, Kirby R F, Jenal T J
Department of Psychology, University of Virginia, Charlottesville 22903.
J Auton Nerv Syst. 1987 Nov;21(1):43-9. doi: 10.1016/0165-1838(87)90090-7.
Borderline hypertensive (BHR) rats are the first generation offspring of a cross of spontaneously hypertensive (SHR) and Wistar-Kyoto (WKY) normotensive rats. In adulthood, BHRs have systolic blood pressures in the 140-160 mm Hg range. If subjected to chronic stress paradigms, however, BHRs develop sustained and permanent elevations in systolic blood pressure (180-200 mm Hg). In the present study, we examined the functional development of cardiac and adrenal medullary responses to reflex activation of the sympathetic nervous system in preweanling BHR and WKY rats. Pups of the two groups were injected with insulin or saline at 4, 8, 12, or 16 days of age and sacrificed 3 h later. Insulin produces an acute lowering of blood glucose which is attended by a centrally mediated increase in sympathetic activity. The induction of ornithine decarboxylase (ODC) activity in heart and the depletion of epinephrine from the adrenal medulla were biochemical indicators of functional sympathetic neurotransmission. WKY and BHR pups had similar levels of cardiac ODC activity under basal conditions and following administration of insulin. In contrast, BHRs had higher amounts of adrenal norepinephrine and epinephrine from 4 to 16 days of age and greater depletion of adrenal epinephrine following insulin administration at 8, 12 and 16 days of age. These findings indicate that BHRs have a greater capacity for catecholamine biosynthesis, storage and release in the adrenal medulla during the preweanling period compared to age-matched normotensive WKY controls. This alteration in the adrenal medulla during the preweanling period may contribute to the susceptibility of adult BHR rats to stress-induced hypertension.
边缘性高血压(BHR)大鼠是自发性高血压(SHR)大鼠与Wistar-Kyoto(WKY)正常血压大鼠杂交产生的第一代后代。成年后,BHR大鼠的收缩压在140 - 160 mmHg范围内。然而,如果受到慢性应激模式的影响,BHR大鼠的收缩压会持续且永久性升高(180 - 200 mmHg)。在本研究中,我们检查了断奶前BHR大鼠和WKY大鼠心脏和肾上腺髓质对交感神经系统反射激活的功能发育。两组幼崽在4、8、12或16日龄时注射胰岛素或生理盐水,并在3小时后处死。胰岛素会使血糖急性降低,同时伴有中枢介导的交感神经活动增加。心脏中鸟氨酸脱羧酶(ODC)活性的诱导以及肾上腺髓质中肾上腺素的消耗是功能性交感神经传递的生化指标。在基础条件下以及给予胰岛素后,WKY和BHR幼崽的心脏ODC活性水平相似。相比之下,BHR大鼠在4至16日龄时肾上腺去甲肾上腺素和肾上腺素含量更高,并且在8、12和16日龄给予胰岛素后肾上腺肾上腺素的消耗更大。这些发现表明,与年龄匹配的正常血压WKY对照相比,BHR大鼠在断奶前期肾上腺髓质中儿茶酚胺的生物合成、储存和释放能力更强。断奶前期肾上腺髓质的这种改变可能导致成年BHR大鼠易患应激性高血压。