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首页> 外文期刊>Drug Metabolism and Disposition: The Biological Fate of Chemicals >Intestinal absorption enhancement of the ester prodrug tenofovir disoproxil fumarate through modulation of the biochemical barrier by defined ester mixtures.
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Intestinal absorption enhancement of the ester prodrug tenofovir disoproxil fumarate through modulation of the biochemical barrier by defined ester mixtures.

机译:通过确定的酯混合物调节生化屏障,可增强酯前药替诺福韦酯富马酸二吡呋酯的肠道吸收。

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摘要

The effect of discrete esters and ester mixtures on the intestinal stability and absorption of tenofovir disoproxil fumarate (tenofovir DF, an esterase-sensitive prodrug of the antiviral tenofovir) was compared with the effect of strawberry extract, which has been shown to enhance the absorption of the prodrug across Caco-2 monolayers and in rat ileum. In addition, the mechanism of absorption enhancement was investigated. In rat intestinal homogenates, complete inhibition of the conversion of tenofovir DF (as obtained by strawberry extract) could only be obtained at relatively high concentrations of the discrete esters or by using mixtures of esters (e.g., propyl p-hydroxybenzoate 0.02%, octyl acetate 0.02%, ethyl caprylate 0.01%). Coincubation of tenofovir DF with this mixture also resulted in an enhancement of its absorption in the in vitro Caco-2 system as well as in rat ileum. As tenofovir DF is a substrate for P-glycoprotein (P-gp)-related efflux carriers in the Caco-2 model, the modulatory effect of the ester mixtures was studied on the functionality of P-gp using cyclosporin A (CsA) as a model substrate. Strawberry extract as well as the mixture of three esters interfered with the absorptive transport of CsA across Caco-2 monolayers, illustrating that both mixtures interfere with both esterase-activity and P-gp functionality. This concerted barrier was not observed in rat ileum, suggesting differential functional activities of the biochemical barrier toward tenofovir DF in different absorption systems. Overall, our results illustrate that modulation of the biochemical barrier (metabolism and efflux) of tenofovir DF by ester mixtures can be used to increase the intestinal absorption of tenofovir DF in an in vitro and an in situ absorption model; the mechanism of action appears to be a complex interplay of different systems; the differential expression of carriers and enzymes in different systems illustrates the difficulty of extrapolating observations between different systems/species.
机译:比较了离散的酯和酯混合物对富马酸替诺福韦酯(抗病毒替诺福韦酯酶敏感的前药替诺福韦DF)肠道稳定性和吸收的作用,并与草莓提取物的作用进行了比较,结果表明草莓提取物能增强对跨Caco-2单层和大鼠回肠的前药。另外,研究了吸收增强的机理。在大鼠肠匀浆中,只能以相对较高浓度的离散酯或通过使用酯类混合物(例如对羟基苯甲酸丙酯0.02%,乙酸辛酯)完全抑制替诺福韦DF(通过草莓提取物获得)转化的抑制作用0.02%,辛酸乙酯0.01%)。替诺福韦DF与该混合物的共孵育还导致其在体外Caco-2系统以及大鼠回肠中的吸收增强。由于替诺福韦DF是Caco-2模型中P-糖蛋白(P-gp)相关外排载体的底物,因此使用环孢菌素A(CsA)作为混合物,研究了酯混合物对P-gp官能度的调节作用。模型基板。草莓提取物以及三种酯的混合物干扰了CsA跨Caco-2单层的吸收性转运,说明这两种混合物均干扰了酯酶活性和P-gp功能。在大鼠回肠中未观察到这种一致的屏障,表明在不同吸收系统中生化屏障对替诺福韦DF的不同功能活性。总体而言,我们的结果表明,酯混合物对替诺福韦DF的生化屏障(代谢和外排)的调节可用于增加替诺福韦DF在体外和原位吸收模型中的肠道吸收;作用机制似乎是不同系统之间复杂的相互作用;载体和酶在不同系统中的差异表达说明了在不同系统/物种之间外推观测值的困难。

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