Witkin J M, Cerne R, Wakulchik M, S J, Gleason S D, Jones T M, Li G, Arnold L A, Li J-X, Schkeryantz J M, Methuku K R, Cook J M, Poe M M
Lilly Research Labs, Eli Lilly and Company, Indianapolis, IN, United States.
Lilly Research Labs, Eli Lilly and Company, Indianapolis, IN, United States.
Pharmacol Biochem Behav. 2017 Jun;157:35-40. doi: 10.1016/j.pbb.2017.04.009. Epub 2017 Apr 22.
Positive allosteric modulators of GABA receptors transduce a host of beneficial effects including anxiolytic actions. We have recently shown that bioavailability and anxiolytic-like activity can be improved by eliminating the ester functionality in imidazo[1,5-a][1,4]diazepines. In the present series of experiments, we further substantiate the value of heterocyle replacement of the ester for potential treatment of anxiety. None of three esters was active in a Vogel conflict test in rats that detects anxiolytic drugs like diazepam. Compounds 7 and 8, ester bioisosters, were selective for alpha 2 and 3 over alpha 1-containing GABA receptors but also had modest efficacy at GABAA alpha 5-containing receptors. Compound 7 was efficacious and potent in this anxiolytic-detecting assay without affecting non-punished responding. The efficacies of the esters and of compound 7 were predicted from their efficacies as anticonvulsants against the GABA antagonist pentylenetetrazole (PTZ). In contrast, the related structural analog, compound 8, did not produce anxiolytic-like effects in rats despite anticonvulsant efficacy. These data thus support the following conclusions: 1) ancillary pharmacological actions of compound 8 might be responsible for its lack of anxiolytic-like efficacy despite its efficacy as an anticonvulsant 2) esters of imidazo[1,5-a][1,4]diazepines do not demonstrate anxiolytic-like effects in rats due to their low bioavailability and 3) replacement of the ester function with suitable heterocycles markedly improves bioavailability and engenders molecules with the opportunity to have potent and efficacious effects in vivo that correspond to human anxiolytic actions.
γ-氨基丁酸(GABA)受体的正变构调节剂可产生一系列有益作用,包括抗焦虑作用。我们最近发现,通过消除咪唑并[1,5-a][1,4]二氮杂䓬中的酯官能团,可以提高生物利用度和抗焦虑样活性。在本系列实验中,我们进一步证实了用杂环取代酯对于焦虑症潜在治疗的价值。在检测地西泮等抗焦虑药物的大鼠Vogel冲突试验中,三种酯均无活性。酯生物电子等排体化合物7和8对含α2和α3而非含α1的GABA受体具有选择性,但对含GABAAα5的受体也有适度的效力。化合物7在这种抗焦虑检测试验中有效且强效,且不影响非惩罚性反应。根据酯和化合物7作为抗惊厥药对抗GABA拮抗剂戊四氮(PTZ)的效力,可以预测它们的效力。相比之下,相关结构类似物化合物8尽管具有抗惊厥效力,但在大鼠中并未产生抗焦虑样作用。因此,这些数据支持以下结论:1)化合物8的辅助药理作用可能是其尽管具有抗惊厥效力但缺乏抗焦虑样效力的原因;2)咪唑并[1,5-a][1,4]二氮杂䓬的酯由于生物利用度低,在大鼠中未表现出抗焦虑样作用;3)用合适的杂环取代酯官能团可显著提高生物利用度,并产生在体内具有与人类抗焦虑作用相对应的强效和有效作用的分子。