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Carbon dioxide sensitivity during hypoglycaemia-induced elevated metabolism in the anaesthetized rat

机译:低血糖引起的麻醉大鼠新陈代谢过程中的二氧化碳敏感性

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摘要

We have utilized an anaesthetized rat model of insulin-induced hypoglycaemia to test the hypothesis that peripheral chemoreceptor gain is augmented during hypermetabolism. Insulin infusion at 0.4 U kg −1min−1 decreased blood glucose concentration significantly to 3.37 ± 0.12 mmol l−1. Whole-body metabolism and basal ventilation were elevated without increase in Pa,CO2 (altered non-significantly from the control level, to 37.3 ± 2.6 mmHg). Chemoreceptor gain, measured either as spontaneous ventilatory airflow sensitivity to Pa,CO2 during rebreathing, or by phrenic minute activity responses to altered Pa,CO2 induced by varying the level of artificial ventilation, was doubled during the period of hypermetabolism. This stimulatory effect was primarily upon the mean inspiratory flow rate, or phrenic ramp component of breathing and was reduced by 75% following bilateral carotid sinus nerve section. In vitro recordings of single carotid body chemoafferents showed that reducing superfusate glucose concentration from 10 mm to 2 mm reduced CO2 chemosensitivity significantly from 0.007 ± 0.002 Hz mmHg−1 to 0.001 ± 0.002 Hz mmHg−1. Taken together, these data suggest that the hyperpnoea observed during hypermetabolism might be mediated by an increase in the CO2 sensitivity of the carotid body, and this effect is not due to the insulin-induced fall in blood glucose concentration.
机译:我们已经利用胰岛素诱导的低血糖的麻醉大鼠模型来测试以下假设:在新陈代谢期间外周化学感受器增益增加。以0.4 U kg -1 min -1 输注胰岛素可使血糖浓度显着降低至3.37±0.12 mmol l -1 。全身新陈代谢和基础通气升高,而Pa,CO2却没有增加(与对照水平相比无显着变化,至37.3±2.6 mmHg)。化学感受器的增益,在呼吸过程中,以对呼吸中Pa,CO2的自发性通气气流敏感性或通过改变人工通气水平引起的Pa,CO2改变的分钟活动反应来衡量,在代谢亢进期间增加了一倍。这种刺激作用主要取决于平均吸气流速或呼吸的ramp斜波分量,并且在双侧颈动脉窦神经切开后降低了75%。单个颈动脉体化学止血剂的体外记录显示,将超融合葡萄糖浓度从10 mm降低至2 mm,可将CO2化学敏感性从0.007±0.002 Hz mmHg -1 显着降低至0.001±0.002 Hz mmHg -1 。综上所述,这些数据表明,在新陈代谢期间观察到的呼吸过快可能是由于颈动脉体对CO2敏感性的增加所介导的,并且这种作用并非归因于胰岛素引起的血糖浓度下降。

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