首页> 外文期刊>American Journal of Physiology >Putative role of the NTS in alterations in neural control of the circulation following exercise training in rats.
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Putative role of the NTS in alterations in neural control of the circulation following exercise training in rats.

机译:NTS在大鼠运动训练后循环神经控制改变中的推定作用。

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摘要

Exercise training (ExTr) has been associated with alterations in neural control of the circulation, including effects on arterial baroreflex function. The nucleus tractus solitarius (NTS) is the primary termination site of cardiovascular afferents and critical in the regulation of baroreflex-mediated changes in heart rate (HR) and sympathetic nervous system outflow. The purpose of the present study was to determine whether ExTr is associated with alterations in neurotransmitter regulation of neurons involved in control of cardiovascular function at the level of the NTS. We hypothesized that ExTr would increase glutamatergic and reduce GABAergic transmission in the NTS and that, collectively, these changes would result in a greater overall sympathoinhibitory drive from the NTS in ExTr animals. To test these hypotheses, male Sprague-Dawley rats were treadmill trained or maintained under sedentary conditions for 8-10 wk. NTS microinjections were performed in Inactin-anesthetized animals instrumented to record mean arterial pressure (MAP), HR, and lumbar sympathetic nerve activity (LSNA). Generalized activation of the NTS with unilateral microinjections of glutamate (1-10 mM, 30 nl) produced dose-dependent decreases in MAP, HR, and LSNA that were unaffected by ExTr. Bilateral inhibition of NTS with the GABAA agonist muscimol (1 mM, 90 nl) produced increases in MAP and LSNA that were blunted by ExTr. In contrast, pressor and sympathoexcitatory responses to bilateral microinjections of the ionotropic glutamate receptor antagonist, kynurenate (40 mM, 90 nl), were similar between groups. Bradycardic responses to bilateral microinjections of the GABAA antagonist bicuculline (0.1 mM, 90 nl) were attenuated by ExTr. These data indicate that alterations in neurotransmission at the level of the NTS contribute importantly to regulation of HR and LSNA in ExTr animals. In addition to alterations at NTS, these experiments suggest indirectly that changes in other cardiovascular nuclei contribute to the observed alterations in neural control of the circulation following ExTr.
机译:运动训练 (ExTr) 与循环神经控制的改变有关,包括对动脉压力反射功能的影响。孤束核 (NTS) 是心血管传入的主要终止部位,在调节压力反射介导的心率 (HR) 变化和交感神经系统流出中至关重要。本研究的目的是确定 ExTr 是否与 NTS 水平上参与控制心血管功能的神经元的神经递质调节的改变有关。我们假设 ExTr 会增加 NTS 中的谷氨酸能并减少 GABA 能传递,并且总的来说,这些变化将导致 ExTr 动物中 NTS 的整体交感神经抑制驱动力更大。为了验证这些假设,雄性Sprague-Dawley大鼠在跑步机上训练或在久坐条件下保持8-10周。 NTS显微注射在Inactin麻醉的动物中,以记录平均动脉压(MAP),HR和腰交感神经活动(LSNA)。单侧显微注射谷氨酸(1-10 mM,30 nl)的 NTS 的全身激活产生了 MAP、HR 和 LSNA 的剂量依赖性降低,而这些降低不受 ExTr 的影响。用GABAA激动剂muscimol(1mM,90nl)对NTS的双侧抑制产生MAP和LSNA的增加,ExTr减弱了这些增加。相比之下,对离子型谷氨酸受体拮抗剂犬尿烯酸(40mM,90nl)的双侧显微注射的升压和交感神经兴奋反应在两组之间相似。ExTr 减弱了对双侧显微注射 GABAA 拮抗剂 bicuculline (0.1 mM, 90 nl) 的心动过缓反应。这些数据表明,NTS 水平的神经传递改变对 ExTr 动物的 HR 和 LSNA 的调节有重要贡献。除了NTS的改变外,这些实验还间接表明,其他心血管核的变化有助于观察到ExTr后循环神经控制的改变。

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