Perdue M H, Davison J S
Am J Physiol. 1986 Nov;251(5 Pt 1):G642-8. doi: 10.1152/ajpgi.1986.251.5.G642.
We examined the mucosal response to endogenous neurotransmitters released from enteric nerves of guinea pig jejunum in vitro by 5 s of electrical transmural stimulation (TS). After TS, a rise in short-circuit current (Isc) occurred that peaked by 60 s and returned to base line by 3-6 min. The Isc response was associated with Cl- movement toward the luminal side of the tissue. The use of adrenergic and muscarinic cholinergic antagonists revealed that there was no adrenergic component but that the cholinergic component comprised up to 50% of the total response. Therefore, more than 50% of the response was due to the action of nonadrenergic, noncholinergic transmitter(s). The addition of the neurotoxin, tetrodotoxin (TTX), produced two effects: 1) an early fall in the base-line Isc and increased net absorption of Na+ and Cl-, and 2) a delayed inhibition of the response to TS. The former effect occurred at lower concentrations of TTX than the latter. Another neurotoxin, aconitine, blocked the response to TS without decreasing the base-line Isc or altering net ion transport. After aconitine, TTX still caused the Isc base line to fall. Because both neurotoxins prevented the Isc response to TS, we conclude that the response is due to the action of released endogenous neurotransmitters. Our results also suggest that TTX has an additional effect that is different from that of aconitine, acting either on the epithelium to enhance absorption or on a population of nerves that are relatively more TTX sensitive to block ongoing release of secretion-stimulating transmitter(s).
我们通过5秒的跨壁电刺激(TS),在体外研究了豚鼠空肠肠神经释放的内源性神经递质引起的黏膜反应。TS后,短路电流(Isc)升高,在60秒时达到峰值,并在3 - 6分钟后恢复到基线水平。Isc反应与氯离子向组织腔侧的移动有关。使用肾上腺素能和毒蕈碱胆碱能拮抗剂表明,不存在肾上腺素能成分,但胆碱能成分占总反应的比例高达50%。因此,超过50%的反应是由于非肾上腺素能、非胆碱能递质的作用。添加神经毒素河豚毒素(TTX)产生了两种效应:1)基线Isc早期下降,钠和氯的净吸收增加;2)对TS反应的延迟抑制。前一种效应在较低浓度的TTX时出现,而后一种效应则在较高浓度时出现。另一种神经毒素乌头碱阻断了对TS的反应,而不降低基线Isc或改变净离子转运。在使用乌头碱后,TTX仍会导致Isc基线下降。由于两种神经毒素都阻止了对TS的Isc反应,我们得出结论,该反应是由于释放的内源性神经递质的作用。我们的结果还表明,TTX具有与乌头碱不同的额外效应,它要么作用于上皮细胞以增强吸收,要么作用于对TTX相对更敏感的一群神经,以阻断分泌刺激递质的持续释放。