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基于香豆素的环前药和基于甲酯的RGD拟肽线性前药的生物转化率及Caco-2细胞渗透特性比较

A comparison of the bioconversion rates and the Caco-2 cell permeation characteristics of coumarin-based cyclic prodrugs and methylester-based linear prodrugs of RGD peptidomimetics.

作者信息

Camenisch G P, Wang W, Wang B, Borchardt R T

机构信息

Department of Pharmaceutical chemistry, University of Kansas, Lawrence 66047, USA.

出版信息

Pharm Res. 1998 Aug;15(8):1174-81. doi: 10.1023/a:1011975404789.

Abstract

PURPOSE

To compare the bioconversion rates in various biological media and the Caco-2 cell permeation characteristics of coumarin based cyclic prodrugs (3a, 3b) and methylester-based linear prodrugs (1b, 2b) of two RGD peptidomimetics (1a, 2a).

METHODS

Bioconversion rates of the prodrugs to the RGD peptidomimetics were determined in Hank balances salt solution (HBSS), pH 7,4, at 37 degrees C and in various biological media (human blood plasma, rat liver homogenate, Caco-2 cell homogenate) known to have esterase activity. Transport rates of the prodrugs and the RGD peptidomimetics were determined using Caco-2 cell monolayers, an in vitro cell culture model of the intestinal mucosa. RESULTS. In HBSS, pH 7,4, the coumarin-based cyclic prodrugs 3a and 3b degraded slowly and quantitatively to the RGD peptidomimetics 1a and 2a, respectively (3a, t1/2 = 630+2-14 min; 3b, t1/2 = 301 +/-12 min). The methylester-based linear prodrugs 1b and 2b were more stable to chemical hydrolysis (1b and 2b, t1/2 > 2000 min). Both the coumarin-based cyclic prodrugs and the methylester-based linear prodrugs degraded more rapidly in biological media containing esterase activity (e.g., 90% human blood plasma: 1b, t1/2 < 5 min; 2b, t1/2 < 5 min; 3a, t1/2 < 91+/-1 min; 3b, 1/2 < 57+/-2 min). When the apical (AP)-to-basolateral (BL) permeation characteristics were determined using Caco-2 cell monolayers, it was found that the methylester prodrugs 1b and 2b underwent esterase bioconversion (>80%) to the RGD peptidomimetics 1a and 2a, respectively, In contrast, the cyclic prodrugs 3a and 3b permeated the cell monolayers intact. Considering the appearance of both the prodrug and the RGD peptidomimetic on the BL side, the methylester prodrugs 1b and 2b were approximately 12-fold more able to permeate than were the RGD peptidomimetics 1a and 2a. When similar analysis of the transport data for the coumarin prodrugs 3a and 3b was performed, they were shown to be approximately 6-fold and 5-fold more able to permeate than were the RGD peptidomimetics 1a and 12a, respectively.

CONCLUSION

The coumarin-based cyclic prodrugs 3a and 3b were chemically less stable, but metabolically more stable, then the methylester based linear prodrugs. The esterase stability of the cyclic prodrugs 3a and 3b means that they are transported intact across the Caco-2 cell monolayer in contrast to the methylester prodrugs 1b and 2b, which undergo facile bioconversion during their transport to the RGD peptidomimetics. However, both prodrug systems successfully delivered more (5-12-fold) of the RGD peptidomimetic and/or the precursor (prodrug) than did the RGD peptidomimetics themselves.

摘要

目的

比较两种RGD拟肽(1a、2a)的香豆素基环型前药(3a、3b)和甲酯基线型前药(1b、2b)在各种生物介质中的生物转化率以及在Caco-2细胞中的渗透特性。

方法

在37℃、pH 7.4的汉克平衡盐溶液(HBSS)以及已知具有酯酶活性的各种生物介质(人血浆、大鼠肝匀浆、Caco-2细胞匀浆)中测定前药向RGD拟肽的生物转化率。使用Caco-2细胞单层(一种肠黏膜的体外细胞培养模型)测定前药和RGD拟肽的转运速率。结果:在pH 7.4的HBSS中,香豆素基环型前药3a和3b分别缓慢且定量地降解为RGD拟肽1a和2a(3a,t1/2 = 630±2 - 14分钟;3b,t1/2 = 301±12分钟)。甲酯基线型前药1b和2b对化学水解更稳定(1b和2b,t1/2 > 2000分钟)。香豆素基环型前药和甲酯基线型前药在含有酯酶活性的生物介质中降解更快(例如,90%人血浆:1b,t1/2 < 5分钟;2b,t1/2 < 5分钟;3a,t1/2 < 91±1分钟;3b,t1/2 < 57±2分钟)。当使用Caco-2细胞单层测定顶端(AP)到基底外侧(BL)的渗透特性时,发现甲酯前药1b和2b分别经酯酶生物转化(>80%)为RGD拟肽1a和2a。相比之下,环型前药3a和3b完整地透过细胞单层。考虑到前药和RGD拟肽在BL侧的出现情况,甲酯前药1b和2b的渗透能力比RGD拟肽1a和2a大约高12倍。当对香豆素前药3a和3b的转运数据进行类似分析时,发现它们的渗透能力分别比RGD拟肽1a和2a大约高6倍和5倍。

结论

香豆素基环型前药3a和3b化学稳定性较差,但代谢稳定性比甲酯基线型前药高。环型前药3a和3b的酯酶稳定性意味着它们与甲酯前药1b和2b不同,能够完整地穿过Caco-2细胞单层,甲酯前药1b和2b在转运为RGD拟肽的过程中容易发生生物转化。然而,两种前药系统成功递送的RGD拟肽和/或前体(前药)都比RGD拟肽本身多(5 - 12倍)。

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