噻苯达唑的水溶性增加的前药。

Acta pharmaceutica Nordica Pub Date : 1992-01-01
L S Nielsen, H Bundgaard, E Falch
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引用次数: 0

摘要

苯并咪唑类驱虫药经口吸收不良,限制了其治疗肺泡或囊性包虫病等全身性感染的有效性。生物利用度低主要是由于苯并咪唑的水溶性较低。以噻苯达唑为模型化合物,研究了前药法获得水溶性提高的衍生物的方法。噻吩咪唑的生物可逆衍生化是通过不同的氯甲酸酯对苯并咪唑进行n -酰化和n -酰基甲基化。n -烷氧羰基衍生物和n -酰基氧甲基衍生物在人血浆、大鼠和猪肝匀浆中均容易水解为噻苯达唑。测定了衍生物水解的ph值分布,并通过配分实验评价了化合物的亲脂性。n -烷氧羰基衍生物的水溶性比母体药物高12倍。N-(4-氨基甲基苯甲酰)氧甲基衍生物具有300倍的水溶性。该衍生物具有良好的水溶性、良好的亲脂性和化学稳定性,加之易于酶解,使其有望成为苯并咪唑类驱虫药的前药,其目的是提高经口生物利用度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Prodrugs of thiabendazole with increased water-solubility.

The poor peroral absorption of benzimidazole anthelmintics limits their usefulness for the treatment of systemic infections such as alveolar or cystic echinococcosis. The low bioavailability has mainly been attributed to the low aqueous solubility of the benzimidazoles. Using thiabendazole as a model compound the prodrug approach was investigated as a mean to obtain derivatives with improved water-solubilities. Bioreversible derivatization of thiabendazole was performed by N-acylation of the benzimidazole moiety with various chloroformates as well as by N-acyloxymethylation. Both the N-alkoxycarbonyl and the N-acyloxymethyl derivatives were readily hydrolyzed to thiabendazole in human plasma and in rat and pig liver homogenates. The pH-rate profiles for the hydrolysis of the derivatives were determined and the lipophilicity of the compounds was assessed by partition experiments. The water-solubility of the N-alkoxycarbonyl derivatives was up to 12 times higher than that of the parent drug. An N-(4-amino-methylbenzoyl)oxymethyl derivative possessed a 300-fold higher water-solubility. The improved aqueous solubility, adequate lipophilicity and chemical stability combined with a facile enzymatic hydrolysis make such derivatives promising prodrugs for benzimidazole anthelmintics with the aim of improving the peroral bioavailability.

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