Hydrolytic and metabolic characteristics of the esters of 1-(3'-hydroxypropyl)-2-methyl-3-hydroxypyridin-4-one (CP41), potentially useful iron chelators.

D Y Liu, Z D Liu, S L Lu, R C Hider
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引用次数: 6

Abstract

1-(3'-Hydroxypropyl)-2-methyl-3-hydroxypyridin-4-one (CP41) has been extensively investigated as an orally effective iron chelator. In order to improve the pharmacokinetic and metabolic properties of CP41, eleven aromatic esters have been synthesised and tested as potential prodrugs. In the present study, the hydrolytic rates of these CP41 esters in phosphate buffer (pH2.0 and pH 7.4), rat blood and rat liver homogenate have been determined and found to cover a wide range. Generally, they possessed relatively slow hydrolytic rates in phosphate buffer (0-50 nmol/ml/hr at pH 2.0 and 0-140 nmol/ml/hr at pH 7.4). The hydrolytic rates in rat blood fell in the range of 9-5766 nmol/ml blood/hr and in rat liver homogenate 1-800 micromol/g liver tissue/hr. All esters possess a higher lipophilicity than that of the parent compound CP41. Although no apparent relationship was observed between the lipophilicities and hydrolytic rates, the esters with relatively higher hydrolytic rates in liver homogenate tend to possess higher iron scavenging efficacies. Further investigation of the metabolism of selected CP41 esters indicates that metabolism is a key factor influencing the efficacy of CP41 esters, as some esters can be metabolically inactivated in the liver in preference to undergoing ester hydrolysis. Ester design, combined with a knowledge of the prodrug metabolism, is a useful strategy for the production of 3-hydroxypyridin-4-ones with enhanced iron scavenging efficacy.

潜在有用的铁螯合剂1-(3′-羟丙基)-2-甲基-3-羟吡啶-4-酮(CP41)酯的水解和代谢特性
1-(3′-羟丙基)-2-甲基-3-羟吡啶-4-酮(CP41)作为一种口服有效的铁螯合剂已被广泛研究。为了改善CP41的药代动力学和代谢特性,合成了11种芳香酯,并对其作为潜在的前药进行了试验。在本研究中,测定了这些CP41酯在磷酸盐缓冲液(pH2.0和ph7.4)、大鼠血液和大鼠肝脏匀浆中的水解速率,发现其覆盖范围很广。通常,它们在磷酸盐缓冲液中的水解速率相对较慢(pH为2.0时为0-50 nmol/ml/hr, pH为7.4时为0-140 nmol/ml/hr)。大鼠血液中的水解率为9 ~ 5766 nmol/ml血/hr,大鼠肝脏匀浆中的水解率为1 ~ 800 micromol/g肝组织/hr。所有酯均具有比母体化合物CP41更高的亲脂性。虽然亲脂性与水解速率之间没有明显的关系,但肝脏匀浆中水解速率相对较高的酯类往往具有较高的铁清除效果。对所选CP41酯代谢的进一步研究表明,代谢是影响CP41酯疗效的关键因素,因为有些酯在肝脏中会被代谢失活,而不是被酯水解。酯设计结合前药代谢的知识,是生产具有增强铁清除功效的3-羟基吡啶-4-酮的有用策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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