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首页> 外文期刊>Journal of Pharmacy and Pharmacology >Acid-catalysed hydrolysis and benzodiazepine-like properties of 5-(dialkylamino)- and 5-(alkylthio)-substituted 8-chloro-6-phenyl-6H-(1,2,4)triazolol(4,3-a)(1,5)benzodiazepines in mice.
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Acid-catalysed hydrolysis and benzodiazepine-like properties of 5-(dialkylamino)- and 5-(alkylthio)-substituted 8-chloro-6-phenyl-6H-(1,2,4)triazolol(4,3-a)(1,5)benzodiazepines in mice.

机译:酸催化的5-(二烷基氨基)-和5-(烷硫基)取代的8-氯-6-苯基-6H-(1,2,4)三唑(4,3-a)()的水解和苯并二氮杂类性质1,5)苯二氮卓类药物在小鼠中。

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摘要

The in-vitro and in-vivo hydrolysis of two benzodiazepine compounds has been studied to evaluate their in-vivo activity in mice. Compounds RL 218 and RL 236, selected as representative examples of N,N-dialkyl-8-chloro-6-phenyl-6H-[1,2,4]triazolo[4,3-a][1,5]benzodiaz epin-5-amines (1) and of their 5-(alkylthio) substituted analogues (2), were rapidly hydrolysed to the corresponding 8-chloro-6-phenyl-4H-[1,2,4]triazolo[4,3-a][1,5]benzodiazepin-5(6H )-one 3 (RL 214) in aqueous acidic solution at pH 1.5. This reaction also occurred extensively in mice when compounds RL 218 and RL 236 were given orally but not intraperitoneally. Both compounds were active against pentylenetetrazole-induced lethal convulsions in mice only when administered orally. After administration of pharmacologically effective oral doses (ED50, the dose protecting 50% of mice), at the time of assessment of the anti-pentylenetetrazole activity, mean brain concentrations of RL 218 and RL 236 were below the limits of sensitivity of the analytical procedure whereas brain concentrations of their metabolite RL 214 were comparable with that present after an oral equiactive dose of this compound itself. RL 214 but not RL 218 or RL 236 had in-vitro affinity for brain benzodiazepine receptors. These results indicate that the anticonvulsant activity of RL 218 and RL 236 in mice depends essentially on their in-vivo transformation into the common active metabolite RL 214 which most probably arises as a result of acid catalysed hydrolysis in the gastric juice.
机译:已经研究了两种苯并二氮杂卓化合物的体外和体内水解作用,以评估它们在小鼠中的体内活性。化合物RL 218和RL 236,被选作N,N-二烷基-8-氯-6-苯基-6H- [1,2,4]三唑[4,3-a] [1,5]苯并二氮杂epi的代表性实例将-5-胺(1)及其5-(烷硫基)取代的类似物(2)快速水解为相应的8-氯-6-苯基-4H- [1,2,4]三唑[4,3- pH值为1.5的酸性水溶液中的a] [1,5]苯并二氮杂-5-5(6H)-one 3(RL 214)。当口服但不腹膜内给予化合物RL 218和RL 236时,该反应在小鼠中也广泛发生。两种化合物仅在口服时才具有抗戊四唑诱导的小鼠致命惊厥的活性。给予药理学上有效的口服剂量(ED50,可保护50%的小鼠的剂量)后,在评估抗戊四唑活性时,平均RL 218和RL 236的大脑浓度低于分析程序的灵敏度极限而其代谢产物RL 214的大脑浓度与口服等剂量该化合物本身后的浓度相当。 RL 214但不具有RL 218或RL 236对脑中苯并二氮杂receptor受体具有体外亲和力。这些结果表明,RL 218和RL 236在小鼠中的抗惊厥活性主要取决于它们在体内向普通活性代谢物RL 214的转化,这很可能是由于胃液中酸催化的水解而产生的。

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