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阿昔洛韦氨基酸酯前药口服给药后的药代动力学:与Caco-2细胞上转运体的相互作用。

Pharmacokinetics of amino acid ester prodrugs of acyclovir after oral administration: interaction with the transporters on Caco-2 cells.

作者信息

Katragadda Suresh, Jain Ritesh, Kwatra Deep, Hariharan Sudharshan, 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. 2008 Oct 1;362(1-2):93-101. doi: 10.1016/j.ijpharm.2008.06.018. Epub 2008 Jun 27.

Abstract

In vivo systemic absorption of the amino acid prodrugs of acyclovir (ACV) after oral administration was evaluated in rats. Stability of the prodrugs, L-alanine-ACV (AACV), L-serine-ACV (SACV), L-isoleucine-ACV (IACV), gamma-glutamate-ACV (EACV) and L-valine-ACV (VACV) was evaluated in various tissues. Interaction of these prodrugs with the transporters on Caco-2 cells was studied. In vivo systemic bioavailability of these prodrugs upon oral administration was evaluated in jugular vein cannulated rats. The amino acid ester prodrugs showed affinity towards various amino acid transporters as well as the peptide transporter on the Caco-2 cells. In terms of stability, EACV was most enzymatically stable compared to other prodrugs especially in liver homogenate. In oral absorption studies, ACV and AACV showed high terminal elimination rate constants (lambda(z)). SACV and VACV exhibited approximately five-fold increase in area under the curve (AUC) values relative to ACV (p<0.05). C(max(T)) (maximum concentration) of SACV was observed to be 39+/-22 microM in plasma which is 2 times better than VACV and 15 times better than ACV. C(last(T)) (concentration at the last time point) of SACV was observed to be 0.18+/-0.06 microM in plasma which is two times better than VACV and three times better than ACV. Amino acid ester prodrugs of ACV were absorbed at varying amounts (C(max)) and eliminated at varying rates (lambda(z)) thereby leading to varying extents (AUC). The amino acid ester prodrug SACV owing to its enhanced stability, higher AUC and better concentration at last time point seems to be a promising candidate for the oral treatment of herpes infections.

摘要

在大鼠中评估了口服给药后阿昔洛韦(ACV)氨基酸前药的体内全身吸收情况。在各种组织中评估了前药L-丙氨酸-ACV(AACV)、L-丝氨酸-ACV(SACV)、L-异亮氨酸-ACV(IACV)、γ-谷氨酸-ACV(EACV)和L-缬氨酸-ACV(VACV)的稳定性。研究了这些前药与Caco-2细胞上转运体的相互作用。在颈静脉插管的大鼠中评估了这些前药口服给药后的体内全身生物利用度。氨基酸酯前药对Caco-2细胞上的各种氨基酸转运体以及肽转运体表现出亲和力。在稳定性方面,与其他前药相比,EACV在酶促作用下最稳定,尤其是在肝匀浆中。在口服吸收研究中,ACV和AACV显示出较高的末端消除速率常数(lambda(z))。相对于ACV,SACV和VACV的曲线下面积(AUC)值增加了约五倍(p<0.05)。观察到SACV在血浆中的C(max(T))(最大浓度)为39±22 microM,比VACV好2倍,比ACV好15倍。观察到SACV在血浆中的C(last(T))(最后一个时间点的浓度)为0.18±0.06 microM,比VACV好2倍,比ACV好3倍。ACV的氨基酸酯前药以不同的量(C(max))被吸收,并以不同的速率(lambda(z))消除,从而导致不同的程度(AUC)。由于其稳定性增强、AUC更高且在最后一个时间点的浓度更好,氨基酸酯前药SACV似乎是口服治疗疱疹感染的一个有前景的候选药物。

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