Haj-Yehia A, Bialer M
Department of Pharmacy, School of Pharmacy, Hebrew University of Jerusalem, Israel.
Pharm Res. 1989 Aug;6(8):683-9. doi: 10.1023/a:1015934321764.
The following valpromide (VPD) derivatives were synthesized and their structure-pharmacokinetic relationships explored: ethylbutylacetamide (EBD), methylpentylacetamide (MPD), propylisopropylacetamide (PID), and propylallylacetamide (PAD). In addition, the anticonvulsant activity of these compounds was evaluated and compared to that of VPD, valnoctamide (VCD), and valproic acid (VPA). MPD, the least-branched compound had the largest clearance and shortest half-life of all the amides investigated and was the least active. All other amides had similar pharmacokinetic parameters. Unlike the other amides, PID and VCD did not metabolize to their respective homologous acids and were the most active compounds. Our study showed that these amides need an unsubstituted beta position in their aliphatic side chain in order to biotransform to their homologous acids. An amide which is not metabolized is more potent as an anticonvulsant than its biotransformed isomer. All amides were more active than their respective homologous acids. In this particular series of aliphatic amides, which were derived from short-branched fatty acids, the anticonvulsant activity was affected by the pharmacokinetics in general and by the biotransformation of the amide to its homologous acid in particular. This amide-acid biotransformation appeared to be dependent upon the chemical structure, especially upon the substitution at position beta of the molecule.
合成了以下丙戊酰胺(VPD)衍生物,并探索了它们的构效关系:乙基丁基乙酰胺(EBD)、甲基戊基乙酰胺(MPD)、丙基异丙基乙酰胺(PID)和丙基烯丙基乙酰胺(PAD)。此外,评估了这些化合物的抗惊厥活性,并与VPD、缬草酰胺(VCD)和丙戊酸(VPA)进行了比较。MPD是支链最少的化合物,在所研究的所有酰胺中具有最大的清除率和最短的半衰期,且活性最低。所有其他酰胺具有相似的药代动力学参数。与其他酰胺不同,PID和VCD不会代谢为各自的同系酸,且是活性最高的化合物。我们的研究表明,这些酰胺在其脂肪族侧链中需要一个未取代的β位才能生物转化为其同系酸。未代谢的酰胺作为抗惊厥剂比其生物转化的异构体更有效。所有酰胺都比它们各自的同系酸更具活性。在这一系列由短支链脂肪酸衍生而来的脂肪族酰胺中,抗惊厥活性总体上受药代动力学影响,尤其受酰胺向其同系酸的生物转化影响。这种酰胺 - 酸生物转化似乎取决于化学结构,特别是取决于分子β位的取代情况。