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首页> 外文期刊>Frontiers in Physiology >Physical Exercise-Induced Cardiovascular and Thermoregulatory Adjustments Are Impaired in Rats Subjected to Cutaneous Artery Denervation
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Physical Exercise-Induced Cardiovascular and Thermoregulatory Adjustments Are Impaired in Rats Subjected to Cutaneous Artery Denervation

机译:体育锻炼诱导的大鼠皮肤皮肤神经支配的心血管和体温调节调节受损。

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This study aimed to investigate the chronic effects of caudal artery denervation on morphometric parameters of the tail vascular smooth muscle and on physical exercise-induced thermoregulatory and cardiovascular adjustments in rats. Male Wistar rats were subjected to caudal artery denervation or the sham procedure. Approximately 26–28 days after these procedures, their thermoregulatory and cardiovascular parameters were evaluated at rest and during or following a fatiguing treadmill run. At the end of the experiments, the rats were euthanized, and samples of their tails were removed to evaluate morphometric parameters of the vascular smooth muscle surrounding the caudal artery. Denervated rats showed morphological adaptations, including increased arterial wall thickness and wall-to-lumen ratios. In resting rats and following the fatiguing exercise, caudal artery denervation barely affected the thermoregulatory and cardiovascular parameters evaluated. By contrast, caudal artery denervation attenuated the increase in tail skin temperature, decreased the spontaneous baroreflex sensitivity, and exacerbated the increases in mean arterial pressure in exercising rats. The increased wall-to-lumen ratio of denervated rats correlated negatively with the maximum tail skin temperature attained or cutaneous heat loss sensitivity but correlated positively with the maximum diastolic blood pressure attained during exercise. In conclusion, cutaneous denervation induces vascular remodeling characterized by morphological adaptations of the tail vascular smooth muscle. This vascular remodeling likely underlies the impaired tail heat loss and blood pressure adjustments in denervated rats subjected to physical exercise. Therefore, we have highlighted the importance of cutaneous vascular innervation integrity in thermal and cardiovascular control in stress-challenged rats. In this sense, our findings advance the understanding of thermoregulatory and cardiovascular system reactions after a sustained cutaneous vascular innervation injury, which is essential for the treatment of some diseases, such as Parkinson's disease and type 1 and type 2 diabetes mellitus.
机译:这项研究旨在研究尾动脉去神经对大鼠尾部血管平滑肌形态参数以及体育锻炼引起的体温调节和心血管调节的慢性影响。对雄性Wistar大鼠进行尾动脉去神经支配或假手术。在这些程序后大约26-28天,在休息,疲劳跑步机期间或之后评估其体温调节和心血管参数。实验结束时,对大鼠实施安乐死,并去除其尾巴样品,以评估尾动脉周围的血管平滑肌的形态学参数。去神经支配的大鼠表现出形态学适应性,包括增加动脉壁厚度和壁腔比。在静止的大鼠中进行疲劳训练后,尾动脉去神经几乎不影响所评估的体温调节和心血管参数。相比之下,在锻炼大鼠中,尾动脉去神经支配减弱了尾部皮肤温度的升高,降低了自发的压力反射敏感性,并加剧了平均动脉压的升高。失神经大鼠的壁腔比增加与获得的最大尾巴皮肤温度或皮肤热损失敏感性呈负相关,而与运动期间获得的最大舒张压呈正相关。总之,皮肤去神经引起血管重塑,其特征在于尾部血管平滑肌的形态适应。这种血管重塑很可能是受体育锻炼的失神经大鼠尾部热损失和血压调节受损的原因。因此,我们强调了应激应激大鼠在热和心血管控制中皮肤血管神经支配完整性的重要性。从这个意义上讲,我们的发现使人们对持续的皮肤血管神经支配损伤后的温度调节和心血管系统反应有了更深入的了解,这对于治疗某些疾病(例如帕金森氏病和1型和2型糖尿病)至关重要。

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