Khatter J C, Friesen J D
Can J Physiol Pharmacol. 1975 Jun;53(3):451-7. doi: 10.1139/y75-064.
Pregangliaaonic stimulation of the cat's superior cervical ganglion in the presence of hemicholinium-3 (HC-3) produced the expected depletion of acetylcholine (ACh) stores, but failed to cause a corresponding reduction in the choline content. These results suggest that either HC-3 possesses an intracellular site of action or that in lower doses it selectively inhibits a specialized choline transport system in cholinergic nerves. At a dose of 2 mg/kg, HC-3 probably blocked ACh synthesis completely in ganglia stimulated at 20 Hz. Under these conditions, there was a rapid depletion of ACh to about 50% of control levels during the first 5 min of stimulation and thereafter the rate of decline in ACh levels proceeded at a much slower pace. Since the 2 mg/kg dose of HC-3 did not raise plasma choline concentrations, it may be assumed that non-specialized choline transport systems in other tissues were not significantly inhibited by this dose of HC-3. However, when the dose of HC-3 was increased to 4 mg/kg, plasma choline levels increased by 58%.
在存在半胱氨酸-3(HC-3)的情况下,对猫的颈上神经节进行节前刺激,会导致预期的乙酰胆碱(ACh)储存耗竭,但胆碱含量并未相应降低。这些结果表明,要么HC-3具有细胞内作用位点,要么在较低剂量下它选择性地抑制胆碱能神经中的一种特殊胆碱转运系统。在2mg/kg的剂量下,HC-3可能在以20Hz刺激的神经节中完全阻断了ACh的合成。在这些条件下,在刺激的前5分钟内,ACh迅速耗竭至对照水平的约50%,此后ACh水平的下降速度则慢得多。由于2mg/kg剂量的HC-3并未提高血浆胆碱浓度,因此可以假定该剂量的HC-3并未显著抑制其他组织中的非特殊胆碱转运系统。然而,当HC-3剂量增加到4mg/kg时,血浆胆碱水平增加了58%。