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Ambient pressure drug loading on trimethylchlorosilane silylated silica aerogel in aspirin controlled-release system

机译:阿司匹林控释系统中三甲基氯硅烷硅烷化二氧化硅气凝胶的环境压力载药量

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Abstract Trimethylchlorosilane silylated silica aerogel (TS-SA) was loaded with a model drug, aspirin. TS-SA preparation, drug loading, and drying were performed through ambient pressure techniques in a safe and cheap manner. The sample structure, drug loading, and drug dissolution profiles were characterized by N2 adsorption and desorption analysis, FT-IR spectroscopy, UV absorption spectroscopy, FE-EM, EDX, XRD, and DSC. The characterization results indicated drug molecules are successfully loaded on the entire nanostructure of TS-SA. Specific surface area, total pore volume, and average pore size decrease with drug loading in TS-SA structure, as well as XRD and DSC results are indicating the amorphous state of loaded aspirin. Drug adsorption isotherm was measured and fitted well by the Freundlich model. Drug release kinetics from the samples were also evaluated in 0.1 N HCl (pH 1.2) and phosphate buffer (pH 7.4). The zero-order model, the first-order model, and the Higuchi model were employed to study the release kinetics. Better fitting to the Higuchi model showed that Fick's diffusion governs the aspirin release mechanism. The release rate of loaded samples was slower than the pure drug in both HCl and phosphate buffer. As pure aspirin dissolves totally in 0.1 N HCl and phosphate buffer within 40 min and 20 min, respectively, loaded drug dissolve 35 ± 4 and 80 ± 4 in 0.1 N HCl and phosphate buffer within 100 min. The ambient pressure drug loading on TS-SA could have interesting potential applications in controlled release drug delivery systems.
机译:摘要 在三甲基氯硅烷硅烷化二氧化硅气凝胶(TS-SA)中加入模型药物阿司匹林。TS-SA的制备、载药和干燥通过环境压力技术以安全且廉价的方式进行。采用N2吸附解吸分析、傅里叶变换红外光谱、紫外吸收光谱、FE-EM、EDX、XRD和DSC等手段对样品结构、载药量和药物溶出度进行了表征。表征结果表明,药物分子成功地负载在TS-SA的整个纳米结构上。TS-SA结构的比表面积、总孔体积和平均孔径随载药量的增加而减小,XRD和DSC结果均表明负载阿司匹林呈无定形状态。通过Freundlich模型测量并拟合了药物吸附等温线。还在 0.1 N HCl (pH 1.2) 和磷酸盐缓冲液 (pH 7.4) 中评估样品的药物释放动力学。采用零阶模型、一阶模型和樋口模型研究了释放动力学。更好地拟合樋口模型表明,Fick的扩散控制着阿司匹林的释放机制。在HCl和磷酸盐缓冲液中,上样样品的释放速率均慢于纯药物。由于纯阿司匹林分别在40 min和20 min内完全溶解在0.1N HCl和磷酸盐缓冲液中,负载药物在100 min内将35%±4溶解±80%溶解在0.1N HCl和磷酸盐缓冲液中。TS-SA上的环境压力载药量在控释给药系统中可能具有有趣的潜在应用。

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