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Swimming Exercise Changes Hemodynamic Responses Evoked by Blockade of Excitatory Amino Receptors in the Rostral Ventrolateral Medulla in Spontaneously Hypertensive Rats

机译:游泳锻炼改变自发性高血压大鼠前额叶前外侧延髓中兴奋性氨基受体的阻滞引起的血流动力学反应

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摘要

Exercise training reduces sympathetic activity in hypertensive humans and rats. We hypothesized that the swimming exercise would change the neurotransmission in the rostral ventrolateral medulla (RVLM), a key region involved in sympathetic outflow, and hemodynamic control in spontaneously hypertensive rats (SHR) and Wistar-Kyoto (WKY) rats. Bilateral injections of kynurenic acid (KYN) were carried out in the RVLM in sedentary- (S-) or exercised- (E-) SHR and WKY rats submitted to swimming for 6  weeks. Rats were α-chloralose anesthetized and artificially ventilated, with Doppler flow probes around the lower abdominal aorta and superior mesenteric artery. Injections into the RVLM were made before and after i.v. L-NAME (nitric oxide synthase, NOS, inhibitor). Injections of KYN into the RVLM elicited a major vasodilation in the hindlimb more than in the mesenteric artery in E-SHR compared to S-SHR, but similar decrease in arterial pressure was observed in both groups. Injections of KYN into the RVLM after i.v. L-NAME attenuated the hindlimb vasodilation evoked by KYN and increased the mesenteric vasodilation in E-SHR. Swimming exercise can enhance the hindlimb vasodilation mediated by peripheral NO release, reducing the activation of neurons with EAA receptors in the RVLM in SHR.
机译:运动训练可减少高血压人和大鼠的交感神经活动。我们假设游泳运动会改变自发性高血压大鼠(SHR)和Wistar-Kyoto(WKY)大鼠的鼻侧腹外侧延髓(RVLM)的神经传递,RVLM是交感神经外流的关键区域,并具有血流动力学控制。在RVLM中,对久坐不动(S-)或运动过(E-)的SHR和WKY大鼠进行游泳6周,进行双侧注射Kynurenic acid(KYN)。使用多普勒血流探针在下腹主动脉和肠系膜上动脉周围麻醉大鼠并对其进行人工通气。在静脉内注射之前和之后进行RVLM注射。 L-NAME(一氧化氮合酶,NOS,抑制剂)。与S-SHR相比,在E-SHR中向RVLM注射KYN引起后肢的主要血管舒张大于在肠系膜动脉的舒张,但是两组均观察到相似的动脉压降低。静脉注射后将KYN注入RVLM L-NAME减弱了KYN引起的后肢血管舒张,并增加了E-SHR的肠系膜血管舒张。游泳运动可以增强由周围NO释放介导的后肢血管舒张,减少SHR RVLM中具有EAA受体的神经元的激活。

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