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多巴胺在高原通气适应中的可能作用。

Possible role of dopamine in ventilatory acclimatization to high altitude.

作者信息

Tatsumi K, Pickett C K, Weil J V

机构信息

Cardiovascular Pulmonary Research Laboratory, University of Colorado Health Sciences Center, Denver 80262, USA.

出版信息

Respir Physiol. 1995 Jan;99(1):63-73. doi: 10.1016/0034-5687(94)00084-d.

Abstract

Ventilatory acclimatization to high altitude is accompanied by increased hypoxic (HVR) and hypercapnic (HCVR) ventilatory responses which may reflect increased carotid body chemosensitivity. Dopamine is an inhibitory neuromodulator of the carotid body and its activity may be reduced by hypoxic exposure. To determine whether decreased dopaminergic activity could account for the increased chemosensitivity of acclimatization, we examined the response to peripheral dopamine receptor (D2) blockade with domperidone on HVR and HCVR in awake cats before and after exposure to simulated altitude of 14,000 ft for 2 days. During anesthesia, we also examined the effects of domperidone on carotid body responses to hypoxia and hypercapnia in acclimatized and low altitude cats. Two days' exposure to hypobaric hypoxia produced an increase in HVR and HCVR. Before acclimatization, domperidone augmented HVR and HCVR, but there was no effect after acclimatization. In anesthetized low altitude cats, domperidone increased carotid body responses to hypoxia and hypercapnia, but had no effect in acclimatized cats. These results indicate that decreased endogenous dopaminergic activity may contribute to increased ventilatory and chemoreceptor responsiveness to hypoxia and hypercapnia during hypoxic ventilatory acclimatization.

摘要

对高海拔的通气适应伴随着低氧通气反应(HVR)和高碳酸通气反应(HCVR)增强,这可能反映出颈动脉体化学敏感性增加。多巴胺是颈动脉体的一种抑制性神经调节剂,低氧暴露可能会降低其活性。为了确定多巴胺能活性降低是否能解释适应过程中化学敏感性的增加,我们在清醒猫暴露于14,000英尺模拟海拔2天前后,研究了用多潘立酮阻断外周多巴胺受体(D2)对HVR和HCVR的影响。在麻醉期间,我们还研究了多潘立酮对适应高海拔和低海拔猫的颈动脉体对低氧和高碳酸血症反应的影响。两天的低压低氧暴露使HVR和HCVR增加。在适应之前,多潘立酮增强了HVR和HCVR,但在适应之后没有影响。在麻醉的低海拔猫中,多潘立酮增加了颈动脉体对低氧和高碳酸血症的反应,但对适应高海拔的猫没有影响。这些结果表明,内源性多巴胺能活性降低可能有助于在低氧通气适应过程中增加对低氧和高碳酸血症的通气和化学感受器反应性。

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