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M1毒蕈碱激动剂占诺美林(LY246708/NNC11 - 0232)的神经化学效应

Neurochemical effects of the M1 muscarinic agonist xanomeline (LY246708/NNC11-0232).

作者信息

Bymaster F P, Wong D T, Mitch C H, Ward J S, Calligaro D O, Schoepp D D, Shannon H E, Sheardown M J, Olesen P H, Suzdak P D, Swedberg M D, Sauerberg P

机构信息

Lilly Research Laboratories, Eli Lilly and Company, Indianapolis, Indianapolis.

出版信息

J Pharmacol Exp Ther. 1994 Apr;269(1):282-9.

PMID:7909558
Abstract

Xanomeline [3(3-hexyloxy-1,2,5-thiadiazol-4-yl)-1,2,5,6-tetrahydro-1-me thylpyridine)] was evaluated in vivo in rat brain for effects on neurotransmitter turnover and inhibition of ex vivo binding of muscarinic radioligands. Xanomeline produced dose-related increases in the metabolite of dopamine, dihydroxyphenylacetic acid (DOPAC), in striatum. The increases in striatal DOPAC levels produced by xanomeline were antagonized by the relatively selective M1 antagonist trihexyphenidyl, suggesting that xanomeline interacts with M1 heteroreceptors on dopamine nerve terminals. Xanomeline produced small increases in striatal acetylcholine levels and did not antagonize the large increases in acetylcholine produced by the nonselective muscarinic agonist oxotremorine, indicating that xanomeline did not block M2 autoreceptors. Xanomeline inhibited ex vivo binding of muscarinic radioligands to homogenates of brain and the inhibition of ex vivo binding occurred in the same dose range as increases in DOPAC levels. Xanomeline did not appreciably induce salivation or antagonize oxotremorine-induced salivation indicating that xanomeline does not interact with M3 receptors. The effects of xanomeline on ex vivo binding and DOPAC levels lasted for about 3 hr and were evident after oral administration. An analog of xanomeline with similar in vivo effects did not inhibit acetylcholinesterase or choline acetyltransferase and inhibited choline uptake only at concentrations much higher than those required to inhibit binding. These data indicate xanomeline is selective agonist for M1 over M2 and M3 receptors in vivo in rat. It is not known whether xanomeline interacts with m4 or m5 receptors in vivo.

摘要

对 xanomeline [3(3 - 己氧基 - 1,2,5 - 噻二唑 - 4 - 基) - 1,2,5,6 - 四氢 - 1 - 甲基吡啶] 进行了大鼠脑内的体内评估,以研究其对神经递质周转的影响以及对毒蕈碱放射性配体体外结合的抑制作用。Xanomeline 使纹状体中多巴胺代谢产物二羟基苯乙酸 (DOPAC) 的水平呈剂量相关增加。Xanomeline 引起的纹状体 DOPAC 水平升高被相对选择性的 M1 拮抗剂苯海索拮抗,这表明 xanomeline 与多巴胺神经末梢上的 M1 异受体相互作用。Xanomeline 使纹状体乙酰胆碱水平略有升高,并且不拮抗非选择性毒蕈碱激动剂氧化震颤素引起的乙酰胆碱大幅增加,这表明 xanomeline 不阻断 M2 自身受体。Xanomeline 抑制毒蕈碱放射性配体与脑匀浆的体外结合,且体外结合抑制作用发生的剂量范围与 DOPAC 水平升高的剂量范围相同。Xanomeline 未明显诱导流涎,也不拮抗氧化震颤素诱导的流涎,表明 xanomeline 不与 M3 受体相互作用。Xanomeline 对体外结合和 DOPAC 水平的影响持续约 3 小时,口服给药后效果明显。一种具有类似体内作用的 xanomeline 类似物不抑制乙酰胆碱酯酶或胆碱乙酰转移酶,仅在浓度远高于抑制结合所需浓度时才抑制胆碱摄取。这些数据表明,在大鼠体内,xanomeline 对 M1 受体的选择性高于 M2 和 M3 受体。尚不清楚 xanomeline 在体内是否与 M4 或 M5 受体相互作用。

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