Kilbourn M R, Nguyen T B, Snyder S E, Sherman P
Department of Internal Medicine, University of Michigan Medical School, Ann Arbor 48109, USA.
Nucl Med Biol. 1998 Nov;25(8):755-60. doi: 10.1016/s0969-8051(98)00071-7.
A series of simple esters incorporating the N-[11C]methylpiperidine structure were examined as in vivo substrates for acetylcholinesterase in mouse brain. 4-N-[11C]Methylpiperidinyl esters, including the acetate, propionate and isobutyrate esters, are good in vivo substrates for mammalian cholinesterases. Introduction of a methyl group at the 4-position of the 4-piperidinol esters, to form the ester of a teritary alcohol, effectively blocks enzymatic action. Methylation of 4-N-[11C]methylpiperidinyl propionate at the 3-position gives a derivative with increased in vivo reactivity toward acetylcholinesterase. Esters of piperidinecarboxylic acids (nipecotic, isonipecotic and pipecolinic acid ethyl esters) are not hydrolyzed by acetylcholinesterase in vivo, nor do they act as in vivo inhibitors of the enzyme. This study has identified simple methods to both increase and decrease the in vivo reactivity of piperidinyl esters toward acetylcholinesterase.
研究了一系列含有N-[11C]甲基哌啶结构的简单酯类作为小鼠脑内乙酰胆碱酯酶的体内底物。4-N-[11C]甲基哌啶酯,包括乙酸酯、丙酸酯和异丁酸酯,是哺乳动物胆碱酯酶良好的体内底物。在4-哌啶醇酯的4位引入甲基,形成叔醇酯,可有效阻断酶促作用。4-N-[11C]甲基哌啶基丙酸酯在3位甲基化后得到一种对乙酰胆碱酯酶体内反应性增加的衍生物。哌啶羧酸酯(哌啶酸、异哌啶酸和哌啶甲酸乙酯)在体内不被乙酰胆碱酯酶水解,也不作为该酶的体内抑制剂。本研究确定了增加和降低哌啶酯对乙酰胆碱酯酶体内反应性的简单方法。