Department of Physiology, School of Medicine of Ribeirão Preto, University of São Paulo, Ribeirão Preto, SP, Brazil.
Auton Neurosci. 2013 Dec;179(1-2):43-8. doi: 10.1016/j.autneu.2013.07.001. Epub 2013 Aug 1.
We evaluated the effects of parasympathetic activation by pyridostigmine (PYR) on chemoreflex sensitivity in a rat model of heart failure (HF rats). HF rats demonstrated higher pulmonary ventilation (PV), which was not affected by PYR. When HF and control rats treated or untreated with PYR were exposed to 15% O2, all groups exhibited prompt increases in respiratory frequency (RF), tidal volume (TV) and PV. When HF rats were exposed to 10% O2 they showed greater PV response which was prevented by PYR. The hypercapnia triggered by either 5% CO2 or 10% CO2 promoted greater RF and PV responses in HF rats. PYR blunted the RF response in HF rats but did not affect the PV response. In conclusion, PYR prevented increased peripheral chemoreflex sensitivity, partially blunted central chemoreflex sensitivity and did not affect basal PV in HF rats.
我们评估了拟副交感神经激活(吡啶斯的明,PYR)对心力衰竭(HF 大鼠)大鼠模型中化学感受反射敏感性的影响。HF 大鼠表现出更高的肺通气(PV),PYR 对其没有影响。当 HF 大鼠和用或不用 PYR 处理的对照大鼠暴露于 15%O2 时,所有组均迅速增加呼吸频率(RF)、潮气量(TV)和 PV。当 HF 大鼠暴露于 10%O2 时,它们表现出更大的 PV 反应,而 PYR 则可预防这种反应。5%CO2 或 10%CO2 引发的高碳酸血症在 HF 大鼠中引起更大的 RF 和 PV 反应。PYR 减弱了 HF 大鼠的 RF 反应,但不影响 PV 反应。总之,PYR 可预防外周化学感受反射敏感性增加,部分减弱中枢化学感受反射敏感性,且不影响 HF 大鼠的基础 PV。