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首页> 外文期刊>Biotechnology Progress >Inverse liquid-solid chromatography to evaluate drug interactions with organosilane-modified polydimethylsiloxane for use inbody-on-a-chipsystems
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Inverse liquid-solid chromatography to evaluate drug interactions with organosilane-modified polydimethylsiloxane for use inbody-on-a-chipsystems

机译:逆液固色谱法评价与有机硅烷改性的聚二甲基硅氧烷的药物相互作用,用于使用体内-On-o-Chipsystems

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Body-on-a-chip and organ-on-a-chip systems utilize polydimethylsiloxane (PDMS) because of the relative suitability of the material for fabrication of microfluidic channels and chambers used in these devices. However, hydrophobic molecules, especially therapeutic compounds, tend to adsorb to PDMS, which may distort the dose-response curves that feed into the pharmacokinetic/pharmacodynamic models used to translate preclinical data into predictions of clinical outcomes. Surface modification by organosilanes is one method being explored to modify PDMS, but the effect of organosilanes on drug adsorption isotherms is not well characterized. We utilized Inverse Liquid-Solid Chromatography to characterize the adsorption parameters of the drugs acetaminophen, diclofenac, and verapamil with native PDMS and organosilane-modified (fluoropolymer (13F) and polyethylene glycol) PDMS surfaces, to correlate the modifications with changes in drug adsorption. It was determined that the organosilane modifications significantly changed the energy of adsorption of the test drug utilizing our methodology.
机译:芯片上的芯片和器官芯片系统利用聚二甲基硅氧烷(PDMS),因为材料的相对适用性制造这些装置中使用的微流体通道和腔室。然而,疏水性分子,尤其是治疗化合物,倾向于吸附到PDMS上,这可能扭曲进料中的剂量 - 反应曲线,该曲线呈现给用于将临床前临床结果转化为预测的药代动力学/药物动力学模型。通过有机硅烷的表面改性是一种探索用于修饰PDM的方法,但有机硅烷对药物吸附等温线的作用并不具备很好的表征。我们利用逆液固色谱法表征药物对乙酰氨基酚,双氯芬酸的吸附参数,用天然PDMS和有机硅烷改性(含氟聚合物(13F)和聚乙二醇)PDMS表面,以将改性与吸毒的变化相关联。确定有机硅烷修饰显着改变了利用我们的方法的测试药物的吸附能量。

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