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阿昔洛韦前药经兔角膜转运与代谢的同步调节:一种涉及酶抑制剂的方法。

Simultaneous modulation of transport and metabolism of acyclovir prodrugs across rabbit cornea: An approach involving enzyme inhibitors.

作者信息

Katragadda Suresh, Talluri Ravi S, Mitra Ashim K

机构信息

Division of Pharmaceutical Sciences, School of Pharmacy, University of Missouri-Kansas City, 5005 Rockhill Road, Kansas City, MO 64110-2499, USA.

出版信息

Int J Pharm. 2006 Aug 31;320(1-2):104-13. doi: 10.1016/j.ijpharm.2006.04.010. Epub 2006 May 23.

Abstract

The aim of this study is to identify the class of enzymes responsible for the hydrolysis of amino acid and dipeptide prodrugs of acyclovir (ACV) and to modulate transport and metabolism of amino acid and dipeptide prodrugs of acyclovir by enzyme inhibitors across rabbit cornea. l-Valine ester of acyclovir, valacyclovir (VACV) and l-glycine-valine ester of acyclovir, gly-val-acyclovir (GVACV) were used as model compounds. Hydrolysis studies of VACV and GVACV in corneal homogenate were conducted in presence of various enzyme inhibitors. IC(50) values were determined for the enzyme inhibitors. Transport studies were conducted with isolated rabbit corneas at 34 degrees C. Complete inhibition of VACV hydrolysis was observed in the presence of Pefabloc SC (4-(2-aminoethyl)-benzenesulfonyl-fluoride) and PCMB (p-chloromercuribenzoic acid). Similar trend was also observed with GVACV in the presence of bestatin. IC(50) values of PCMB and bestatin for VACV and GVACV were found to be 3.81+/-0.94 and 0.34+/-0.08muM respectively. Eserine, tetraethyl pyrophosphate (TEPP) and diisopropyl fluorophosphate (DFP) also produced significant inhibition of VACV hydrolysis. Transport of VACV and GVACV across cornea showed decreased metabolic rate and modulation of transport in presence of PCMB and bestain respectively. The principle enzyme classes responsible for the hydrolysis of VACV and GVACV were carboxylesterases and aminopeptidases respectively. Enzyme inhibitors modulated the transport and metabolism of prodrugs simultaneously even though their affinity towards prodrugs was distinct. In conclusion, utility of enzyme inhibitors to modulate transport and metabolism of prodrugs appears to be promising strategy for enhancing drug transport across cornea.

摘要

本研究的目的是确定负责阿昔洛韦(ACV)氨基酸和二肽前药水解的酶类别,并通过酶抑制剂调节阿昔洛韦氨基酸和二肽前药在兔角膜中的转运和代谢。阿昔洛韦的L-缬氨酸酯(伐昔洛韦,VACV)和阿昔洛韦的L-甘氨酸-缬氨酸酯(甘-缬-阿昔洛韦,GVACV)用作模型化合物。在各种酶抑制剂存在的情况下,对VACV和GVACV在角膜匀浆中的水解进行了研究。测定了酶抑制剂的IC50值。在34℃下用分离的兔角膜进行转运研究。在苯甲磺酰氟(Pefabloc SC,4-(2-氨基乙基)-苯磺酰氟)和对氯汞苯甲酸(PCMB)存在的情况下,观察到VACV水解被完全抑制。在贝司他汀存在的情况下,GVACV也观察到类似趋势。发现PCMB和贝司他汀对VACV和GVACV的IC50值分别为3.81±0.94μM和0.34±0.08μM。毒扁豆碱、焦磷酸四乙酯(TEPP)和二异丙基氟磷酸酯(DFP)也对VACV水解产生显著抑制作用。VACV和GVACV在角膜中的转运分别显示在PCMB和贝司他汀存在的情况下代谢速率降低和转运受到调节。负责VACV和GVACV水解的主要酶类别分别是羧酸酯酶和氨肽酶。酶抑制剂即使对前药的亲和力不同,也能同时调节前药的转运和代谢。总之,酶抑制剂调节前药转运和代谢的效用似乎是增强药物跨角膜转运的一种有前景的策略。

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