首页> 外文OA文献 >Molecular dynamics study of non-nucleoside reverse transcriptase inhibitor 4-[[4-[[4-[(E)-2-cyanoethenyl]-2,6-dimethylphenyl]amino]-2-pyrimidinyl]amino]benzonitrile (TMC278/rilpivirine) aggregates: correlation between amphiphilic properties of the drug and oral bioavailability
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Molecular dynamics study of non-nucleoside reverse transcriptase inhibitor 4-[[4-[[4-[(E)-2-cyanoethenyl]-2,6-dimethylphenyl]amino]-2-pyrimidinyl]amino]benzonitrile (TMC278/rilpivirine) aggregates: correlation between amphiphilic properties of the drug and oral bioavailability

机译:非核苷类逆转录酶抑制剂4-[[4-[[4-[(E)-2-氰基乙烯基] -2,6-二甲基苯基]氨基] -2-嘧啶基]氨基]苄腈(TMC278 / rilpivirine )总量:药物的两亲性质与口服生物利用度之间的相关性

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摘要

The non-nucleoside reverse transcriptase inhibitor (NNRTI) TMC278/rilpivirine is an anti-AIDS therapeutic agent with high oral bioavailability despite its high hydrophobicity. Previous studies established a correlation between ability of the drug molecule to form stable, homogeneous populations of spherical nanoparticles (approximately 100-120 nm in diameter) at low pH in surfactant-independent fashion and good oral bioavailability. Here, we hypothesize that the drug is able to assume surfactant-like properties under physiologically relevant conditions, thus facilitating formation of nanostructures in the absence of other surfactants. The results of all-atom molecular dynamics simulations indeed show that protonated drug molecules behave as surfactants at the water/aggregate interface while neutral drug molecules assist aggregate packing via conformational variability. Our simulation results suggest that amphiphilic behavior at low pH and intrinsic flexibility influence drug aggregation and are believed to play critical roles in the favorable oral bioavailability of hydrophobic drugs.
机译:非核苷逆转录酶抑制剂(NNRTI)TMC278 / rilpivirine是抗艾滋病治疗药物,尽管具有高疏水性,但口服生物利用度高。先前的研究建立了药物分子在低pH值下以不依赖表面活性剂的方式形成稳定,均匀的球形纳米颗粒种群(直径约100-120 nm)的能力与良好的口服生物利用度之间的相关性。在这里,我们假设该药物能够在生理相关条件下呈现类似表面活性剂的特性,从而在没有其他表面活性剂的情况下促进纳米结构的形成。所有原子分子动力学模拟的结果确实表明,质子化的药物分子在水/聚集体界面处表现为表面活性剂,而中性药物分子通过构象变异性帮助聚集体堆积。我们的模拟结果表明,在低pH和固有柔韧性下,两亲行为会影响药物聚集,并被认为在疏水性药物良好的口服生物利用度中起关键作用。

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