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研究化学结构对与乙酰胆碱相关化合物的亲和力和效力影响的尝试。

AN ATTEMPT TO STUDY THE EFFECTS OF CHEMICAL STRUCTURE ON THE AFFINITY AND EFFICACY OF COMPOUNDS RELATED TO ACETYLCHOLINE.

作者信息

BARLOW R B, SCOTT K A, STEPHENSON R P

出版信息

Br J Pharmacol Chemother. 1963 Dec;21(3):509-22. doi: 10.1111/j.1476-5381.1963.tb02019.x.

Abstract

Two sets of series of compounds, RN(+)Me(3), RN(+)Me(2)Et, RN(+)MeEt(2), RN(+)Et(3), and R'N(+)Me(3), R'N(+)Me(2)Et, R'N(+)MeEt(2), R'N(+)Et(3), have been prepared, in which R is a 2-(diphenylacetoxy)ethyl, 2-(benziloyloxy)ethyl, 2-(2,2-diphenylethoxy)ethyl, 3-(diphenylmethoxy)propyl or 3,3-diphenylbutyrylmethyl group, and R' is a 2-acetoxyethyl, 2-ethoxyethyl, 3-methoxypropyl or butyrylmethyl group: compounds of the first set therefore differ from those of the second set in that they contain a diphenylmethyl group (or a benziloyl group) in place of a methyl group. The former compounds are antagonists of acetylcholine whereas most of the latter act like acetylcholine. The affinity constants of the former compounds for the acetylcholine receptors of the guinea-pig ileum have been determined and the equipotent molar ratios relative to acetylcholine have been measured for the latter compounds. The variation of the affinity constant with the constitution of the onium group in the antagonists (the diphenylmethyl compounds) was sufficiently consistent from one series to another for it to seem likely that corresponding changes in affinity with the constitution of the onium group would occur in the agonists. From the relative activity of the agonists and with this knowledge of relative affinity it was possible to assess the effects of their structure on efficacy. Substitution of one methyl in the onium group by an ethyl group in these compounds increased affinity but decreased efficacy. The replacement of a second methyl by a second ethyl group had little effect on affinity but decreased efficacy still further. The replacement of the ester link in acetylcholine by a 4-ether oxygen atom (as in the diphenylmethoxypropyl and methoxypropyl compounds) did not appreciably reduce affinity but markedly reduced efficacy, whereas the replacement of the ester link by a 3-ether oxygen atom (as in the diphenylethoxyethyl and ethoxyethyl compounds) markedly reduced affinity but did not reduce efficacy. The diphenylbutyrylmethyl compounds had low affinity and the butyrylmethyl compounds had low efficacy. We conclude that the action of acetylcholine at the postganglionic parasympathetic receptors in the guinea-pig ileum depends upon the presence of the 4-carbonyl group (and presumably the onium group) for affinity and on the 3-ether oxygen atom and the trimethylammonium group for efficacy.

摘要

已制备出两组系列化合物,即RN(+)Me(3)、RN(+)Me(2)Et、RN(+)MeEt(2)、RN(+)Et(3)以及R'N(+)Me(3)、R'N(+)Me(2)Et、R'N(+)MeEt(2)、R'N(+)Et(3),其中R为2-(二苯基乙酰氧基)乙基、2-(联苯甲酰氧基)乙基、2-(2,2-二苯氧基)乙基、3-(二苯基甲氧基)丙基或3,3-二苯基丁酰甲基,而R'为2-乙酰氧基乙基、2-乙氧基乙基、3-甲氧基丙基或丁酰甲基:因此,第一组化合物与第二组化合物的不同之处在于,前者含有二苯基甲基(或联苯甲酰基)以取代甲基。前者化合物是乙酰胆碱的拮抗剂,而后者大多数表现得像乙酰胆碱。已测定了前者化合物对豚鼠回肠乙酰胆碱受体的亲和常数,并测定了后者化合物相对于乙酰胆碱的等效摩尔比。拮抗剂(二苯基甲基化合物)中亲和常数随鎓基团结构的变化在各系列之间足够一致,以至于似乎激动剂中亲和常数也会随鎓基团结构发生相应变化。根据激动剂的相对活性以及这种相对亲和力的知识,可以评估它们的结构对效能的影响。在这些化合物中,将鎓基团中的一个甲基用乙基取代会增加亲和力但降低效能。将第二个甲基用第二个乙基取代对亲和力影响不大,但进一步降低了效能。将乙酰胆碱中的酯键用4-醚氧原子取代(如在二苯基甲氧基丙基和甲氧基丙基化合物中)不会明显降低亲和力,但会显著降低效能,而将酯键用3-醚氧原子取代(如在二苯氧基乙基和乙氧基乙基化合物中)会显著降低亲和力但不会降低效能。二苯基丁酰甲基化合物亲和力低,丁酰甲基化合物效能低。我们得出结论,乙酰胆碱在豚鼠回肠节后副交感神经受体上的作用取决于4-羰基(大概还有鎓基团)的存在以提供亲和力,以及3-醚氧原子和三甲铵基团以提供效能。

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