首页> 外文期刊>The Journal of Physiology >Blockade of acid sensing ion channels attenuates the exercise pressor reflex in cats.
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Blockade of acid sensing ion channels attenuates the exercise pressor reflex in cats.

机译:酸感应离子通道的阻滞减弱了猫的运动加压反射。

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Although thin fibre muscle afferents possess acid sensing ion channels (ASICs), their contribution to the exercise pressor reflex is not known. This lack of information is partly attributable to the fact that there is no known selective in vivo antagonist for ASICs. Although amiloride has been shown to antagonize ASICs, it also has been shown to antagonize voltage-gated sodium channels, thereby impairing impulse conduction in sensory nerves. Our aim was to test the hypothesis that lactic acid accumulation in exercising muscle acted on ASICs located on thin fibre muscle afferents to evoke the metabolic component of the exercise pressor reflex. To test this hypothesis, we determined in decerebrate cats if amiloride attenuated the pressor and cardioaccelerator responses to static contraction, to tendon stretch and to arterial injections of lactic acid and capsaicin. We found a dose of amiloride (0.5 microg kg(-1); i.a.) that attenuated the pressor and cardioaccelerator responses to both contraction and lactic acid injection, but had no effect on the responses to stretch and capsaicin. A higher dose of amiloride (5 microg kg(-1), i.a.) not only blocked the pressor and cardioaccelerator responses to lactic acid and contraction, but also attenuated the responses to stretch and to capsaicin, manoeuvers in which ASICs probably play no significant role. In addition, we found that the low dose of amiloride (0.5 microg kg(-1)) had no effect on the responses of muscle spindles to tendon stretch and to succinylcholine, whereas the high dose (5 microg kg(-1)) attenuated the responses to both. Our data suggest the low dose of amiloride used in our experiments selectively blocked ASICs, whereas the high dose blocked ASICs and impulse conduction in muscle afferents. We conclude that ASICs play a role in the metabolic component of the exercise pressor reflex.
机译:尽管细纤维肌肉传入神经具有酸感应离子通道(ASIC),但它们对运动加压反射的作用尚不清楚。信息的缺乏部分归因于没有已知的针对ASIC的选择性体内拮抗剂这一事实。尽管已显示出阿米洛利具有拮抗ASIC的作用,但也具有拮抗电压门控性钠通道的作用,从而削弱了感觉神经的冲动传导。我们的目的是检验以下假设:运动肌肉中的乳酸积累作用于位于细纤维肌肉传入神经上的ASIC,从而引起运动加压反射的代谢成分。为了验证这一假设,我们在无脑的猫中确定了阿米洛利是否减弱了对静态收缩,肌腱伸展以及乳酸和辣椒素动脉注射的升压和心脏加速剂的反应。我们发现了一定剂量的阿米洛利(0.5 microg kg(-1); i.a.),可减弱对收缩和乳酸注射的升压和心脏加速剂的反应,但对舒张和辣椒素的反应没有影响。较高剂量的阿米洛利(5 microg kg(-1),ia)不仅阻断了升压和心脏加速剂对乳酸和收缩的反应,而且减弱了对舒张和辣椒素的反应,而回旋操作对ASIC可能没有重要作用。此外,我们发现低剂量的阿米洛利(0.5 microg kg(-1))对肌肉纺锤体对肌腱舒张和琥珀酰胆碱的反应没有影响,而高剂量(5 microg kg(-1))减弱对两者的回应。我们的数据表明,在我们的实验中使用的低剂量阿米洛利可以选择性地阻断ASIC,而高剂量则可以阻断ASIC和肌肉传入神经的冲动传导。我们得出结论,ASIC在运动加压反射的代谢成分中起作用。

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