The hypothalamus is a well-known autonomic regulatory region of the brain involved in integrating several behaviors as well as cardiorespiratory activity. Our laboratory has shown that the caudal hypothalamus modulates the cardiorespiratory responses associated with exercise. In addition, other findings from this laboratory and others have implicated alterations in this same brain region in spontaneously hypertensive rats as contributing factors of the elevated levels of arterial pressure in hypertension. Several studies have revealed a gamma-amino-butyric acid (GABAergic) deficiency in the caudal hypothalamus of spontaneously hypertensive rats that contributes to the tonic disinhibition and overactivity of this pressor region. Because chronic exercise is able to increase cardiovascular health in the hypertensive rat, we hypothesized that exercise-induced caudal hypothalamic plasticity partially underlies the beneficial effects of physical activity. In this review we discuss initial findings from this lab that support this hypothesis. Our experiments demonstrate that chronic exercise alters gene expression and neuronal activity in the caudal hypothalamus of the spontaneously hypertensive rat. These findings describe a potential mechanism by which chronic exercise lowers blood pressure in the hypertensive individual.

译文

下丘脑:是众所周知的大脑自主调节区域,参与整合多种行为以及心肺活动。我们的实验室表明,尾下丘脑调节与运动有关的心肺反应。此外,来自该实验室的其他发现以及其他发现都暗示了自发性高血压大鼠在同一大脑区域的改变是高血压中动脉压水平升高的原因。几项研究表明,自发性高血压大鼠的尾下丘脑中存在γ-氨基丁酸(GABAergic)缺乏,导致该升压区域的强直性抑制和过度活跃。因为慢性运动能够增加高血压大鼠的心血管健康,所以我们假设运动引起的尾丘脑下丘脑可塑性部分地是体育锻炼的有益作用。在这篇综述中,我们讨论了来自该实验室的初步发现,这些发现支持了这一假设。我们的实验表明,慢性运动会改变自发性高血压大鼠尾下丘脑的基因表达和神经元活性。这些发现描述了慢性运动降低高血压个体血压的潜在机制。

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