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胆碱芥子气对大鼠颈上神经节的作用。

The effect of choline mustard on the rat superior cervical ganglia.

作者信息

Allen M C

出版信息

Br J Pharmacol. 1983 Jun;79(2):489-97. doi: 10.1111/j.1476-5381.1983.tb11023.x.

DOI:10.1111/j.1476-5381.1983.tb11023.x
PMID:6317112
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2044858/
Abstract

The effect of choline mustard aziridinium ion (ChM) on the isolated superior cervical ganglion of the rat was investigated. In the presence of ChM (22.5 microM), stimulation at 1 Hz resulted in a slowly developing blockade of transmission, which did not occur at a stimulus frequency of 0.1 Hz. Choline (0.1 mM) slowed the onset of the blockade produced by stimulation at 1 Hz in the presence of ChM. The presence of excess thiosulphate ions prevented the action of ChM on the transmission in the superior cervical ganglion. Treatment of the ganglion with ChM (22.5 microM) only slightly inhibited the depolarization produced by carbachol (dose ratio 1.3), suggesting the drug produced a small degree of receptor blockade. [3H]-choline accumulation in the rat superior cervical ganglia displays several components: (a) sodium-dependent high affinity uptake (SDHAU) that can be activated further by preincubation in a high concentration of K+ ions; (b) sodium-dependent low affinity uptake (SILAU); (c) linear diffusional accumulation which does not saturate. Hemicholinium-3 selectively inhibits the activated sodium-dependent high affinity uptake, but is a weak inhibitor of resting sodium-dependent high affinity uptake and sodium-independent low affinity uptake. ChM inhibits both activated and resting sodium-dependent high affinity uptake, but is a very weak inhibitor of sodium-independent low affinity uptake. Homocholine shows similar selectivity. ChM inhibition of activated sodium-dependent high affinity uptake is very much more persistent than that of hemicholinium-3. Hemicholinium-3 and ChM both inhibit [3H]-acetylcholine synthesis.

摘要

研究了胆碱氮芥氮丙啶离子(ChM)对大鼠离体颈上神经节的作用。在存在ChM(22.5微摩尔)的情况下,以1赫兹频率刺激会导致传递的缓慢发展性阻断,而在0.1赫兹刺激频率下则不会出现这种情况。胆碱(0.1毫摩尔)减缓了在存在ChM时以1赫兹频率刺激所产生的阻断的起始。过量硫代硫酸根离子的存在可防止ChM对颈上神经节传递的作用。用ChM(22.5微摩尔)处理神经节仅轻微抑制了卡巴胆碱产生的去极化(剂量比为1.3),这表明该药物产生了一定程度的受体阻断。[3H] - 胆碱在大鼠颈上神经节中的积累表现出几个组分:(a)钠依赖性高亲和力摄取(SDHAU),可通过在高浓度钾离子中预孵育进一步激活;(b)钠依赖性低亲和力摄取(SILAU);(c)不饱和的线性扩散积累。半胱氨酰胆碱-3选择性抑制激活的钠依赖性高亲和力摄取,但对静息钠依赖性高亲和力摄取和非钠依赖性低亲和力摄取是弱抑制剂。ChM抑制激活的和静息的钠依赖性高亲和力摄取,但对非钠依赖性低亲和力摄取是非常弱的抑制剂。高胆碱表现出类似的选择性。ChM对激活的钠依赖性高亲和力摄取的抑制比半胱氨酰胆碱-3更持久。半胱氨酰胆碱-3和ChM都抑制[3H] - 乙酰胆碱的合成。

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引用本文的文献

1
Hemicholinium mustard derivatives: preliminary assessment of cholinergic neurotoxicity.
Neurochem Res. 1986 Jul;11(7):1091-102. doi: 10.1007/BF00965597.
2
Differences in control of descending inhibition in the proximal and distal regions of rat colon.大鼠结肠近端和远端区域下行抑制控制的差异。
Br J Pharmacol. 1990 Dec;101(4):1011-5. doi: 10.1111/j.1476-5381.1990.tb14198.x.

本文引用的文献

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