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Design, synthesis, and pharmacological evaluations of potential anticonvulsant amino acid derivatives, carbamate compounds, and hexahydropyrimidine-2,4-diones.

机译:潜在的抗惊厥性氨基酸衍生物,氨基甲酸酯化合物和六氢嘧啶-2,4-二酮的设计,合成和药理评估。

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摘要

Several categories of compounds were designed and explored as new anticonvulsant agents. Results from simple amino acid derivatives (1, 2, 3, 4, 5, 6, 14, 15) suggested that amide derivatives with carbamate moiety provided good protection in mice. Amide derivative 14 gave ED50 of 32.4 mg/Kg in MES, and methyl amide 4 showed substantial PTZ activity (ED50 = 33 mg/Kg). An intramolecular cyclization from the α-uredio acid to a hydantoin species (5, 7) was found to occur under acidic condition. Monocarbamate compounds derived from Felbamate were also selected (8, 9, 10, 11, 12, 13). The one arm analog 8, providing mediocre mice activity (SJU ED50 = 71.7 mg/Kg in MES and 123.6 mg/Kg in PTZ; NIH ED50 = 72.7 mg/Kg in MES and 87.6 mg/Kg in PTZ), however provided excellent activity in rats (ED50 = 21 mg/Kg). Without an apparent toxicity and with PI > 15, this unique structure 8 may be a potential replacement for Felbamate. Derivatives of hexahydropyrimidine-2,4-dione (16, 17, 18, 19, 20), which are barbiturate analogs were explored as well. Compound 18 provided ED50 of 26 mg/Kg in mice PTZ while 19 provided lower ED50 of 11.8 mg/Kg in mice MES and substantial activity of 40 mg/Kg in rat MES. N-3 benzyl substitution (16) provided higher activity than N-3 propyl substitution (20). An extra methyl group on C-5 or C-6 with N-3 benzyl substitution further increased seizure protection. C-6 methylation (19) selectively enhanced MES protection in both mice and rats. In addition, N-hydroxyalkyl carbamates (21, 22, 23, 24, 25, 26, 27, 28) were synthesized and evaluated. In mice MES test, 28 showed significant activity (ED50 = 14.9 mg/Kg) but most of them were inactive in NIH mice tests, especially in scPTZ protocol. However, a pair of enantiomers provided remarkable activity in rat tests, especially MES activity. Oral rat tests showed that R-isomer (26, ED50 = 23.85 mg/Kg and PI > 21) is superior to S-isomer ( 25, ED50 = 67.58 mg/Kg) against MES. Metabolic instability and a possible requirement of activation process may possibly explain no apparent SAR and inconsistency results between animal species for N-hydroxyalkyl carbamates.
机译:设计和开发了几类化合物作为新的抗惊厥药。简单氨基酸衍生物( 1、2、3、4、5、6、14、15 )的结果表明,具有氨基甲酸酯部分的酰胺衍生物可为小鼠提供良好的保护。酰胺衍生物 14 在MES中的ED 50 在MES中为32.4 mg / Kg,甲基酰胺 4 表现出显着的PTZ活性(ED 50 < / sub> = 33 mg / Kg)。发现在酸性条件下发生了从α-脲醛酸到乙内酰脲种类( 5,7 )的分子内环化。还选择了来自非尔贝特的一元氨基甲酸酯化合物( 8、9、10、11、12、13 )。单臂类似物 8 ,提供中等水平的小鼠活性(MES中SJU ED 50 = 71.7 mg / Kg,PTZ中PJ为123.6 mg / Kg; NIH ED 50 <在MES中为/ sub> = 72.7 mg / Kg,在PTZ中为/ sub> 87.6 mg / Kg),但在大鼠中具有出色的活性(ED 50 = 21 mg / Kg)。没有明显的毒性并且PI> 15,这种独特的结构 8 可能替代了Felbamate。还研究了六氢嘧啶-2,4-二酮( 16、17、18、19、20 )的衍生物,它们是巴比妥酸盐类似物。化合物 18 在小鼠PTZ中提供ED 50 为26 mg / Kg,而 19 提供较低的ED 50 为11.8 mg小鼠MES中的/ Kg和大鼠MES中40 mg / Kg的基本活性。 N-3苄基取代( 16 )的活性高于N-3丙基取代( 20 )。 C-5或C-6上带有N-3苄基取代的额外甲基进一步增强了癫痫发作的保护作用。 C-6甲基化( 19 )选择性增强了小鼠和大鼠的MES保护。此外,合成并评估了氨基甲酸N-羟烷基酯( 21、22、23、24、25、26、27、28 )。在小鼠MES测试中,有28种具有显着活性(ED 50 = 14.9 mg / Kg),但其中大多数在NIH小鼠测试中均无活性,尤其是在scPTZ方案中。但是,一对对映异构体在大鼠试验中提供了显着的活性,尤其是MES活性。口服大鼠试验表明,R-异构体( 26 ,ED 50 = 23.85 mg / Kg和PI> 21)优于S-异构体( 25 ,ED 50 = 67.58 mg / Kg)。代谢不稳定和激活过程的可能要求可能解释了没有明显的SAR和动物物种之间N-羟烷基氨基甲酸酯的不一致结果。

著录项

  • 作者

    Kung, Ching-Hsin.;

  • 作者单位

    St. John's University (New York), School of Pharmacy.;

  • 授予单位 St. John's University (New York), School of Pharmacy.;
  • 学科 Chemistry Pharmaceutical.
  • 学位 Ph.D.
  • 年度 2002
  • 页码 128 p.
  • 总页数 128
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 药物化学;
  • 关键词

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