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疏水性药物分子的浓度和pH依赖性聚集及其与口服生物利用度的相关性。

Concentration and pH dependent aggregation of hydrophobic drug molecules and relevance to oral bioavailability.

作者信息

Frenkel Yulia Volovik, Clark Arthur D, Das Kalyan, Wang Yuh-Hwa, Lewi Paul J, Janssen Paul A J, Arnold Eddy

机构信息

Center for Advanced Biotechnology and Medicine and Department of Chemistry and Chemical Biology, Rutgers University, 679 Hoes Lane, Piscataway, New Jersey 08854, USA.

出版信息

J Med Chem. 2005 Mar 24;48(6):1974-83. doi: 10.1021/jm049439i.

Abstract

We have examined selected physicochemical properties of compounds from the diaryltriazine/diarylpyrimidine (DATA/DAPY) classes of non-nucleoside reverse transcriptase inhibitors (NNRTIs) and explored possible correlations with their bioavailability. In simple aqueous solutions designed to mimic the gastrointestinal (GI) environment of a fasting individual, all NNRTIs demonstrated formation of aggregates as detected by dynamic light scattering and electron microscopy. Under various conditions mimicking physiological transitions in the GI environment, aggregate size distributions were shown to depend on compound concentration and pH. NNRTIs with good absorption were capable of forming aggregates with hydrodynamic radii of </=100 nm at higher concentrations and over wide ranges of pH, while poorly absorbed inhibitors form aggregates with radii of >/=250 nm at concentrations above 0.01 mM, probably representing precipitate. We propose a model in which the uptake rate into systemic circulation depends on having hydrophobic drug aggregates of appropriate size available for absorption at different locations within the GI tract.

摘要

我们研究了非核苷类逆转录酶抑制剂(NNRTIs)中二芳基三嗪/二芳基嘧啶(DATA/DAPY)类化合物的特定物理化学性质,并探讨了其与生物利用度之间可能存在的相关性。在旨在模拟空腹个体胃肠道(GI)环境的简单水溶液中,通过动态光散射和电子显微镜检测发现,所有NNRTIs均形成了聚集体。在模拟GI环境中生理转变的各种条件下,聚集体尺寸分布显示取决于化合物浓度和pH值。具有良好吸收性的NNRTIs能够在较高浓度和较宽pH范围内形成流体动力学半径≤100 nm的聚集体,而吸收较差的抑制剂在浓度高于0.01 mM时形成半径≥250 nm的聚集体,这可能代表沉淀。我们提出了一个模型,其中进入体循环的摄取速率取决于胃肠道不同位置是否有合适大小的疏水性药物聚集体可供吸收。

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