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Fixed Bed Adsorption of Drugs on Silica Aerogel from Supercritical Carbon Dioxide Solutions

机译:超临界二氧化碳溶液对硅胶气凝胶上药物的固定床吸附

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摘要

Supercritical adsorption coupled with the high adsorption capacity of silica aerogel allows the preparation of a new kind of delivery systems of poor water soluble drugs. In order to overcome drawbacks of conventional techniques where the use of liquid solvents can cause the fracture of aerogel porous structure, in this work a new adsorption process of drugs from a supercritical mixture is proposed. Adsorption takes place from a fluid solution of the drug in supercritical CO2 and ethanol as cosolvent. A fixed bed adsorption plant has been developed to allow fast mixing of fluid phase and effective contact in the adsorption column. The use of ethanol as cosolvent allows to overcome the limitation of supercritical adsorption due to low solubility of many drugs in supercritical CO2. Adsorption isotherms were measured for one-model substance, nimesulide, at 40°C, and breakthrough curve was experimentally obtained. The drug loading of the drug into silica aerogel was up to 9 wt%. The drug composite was characterized using scanning electron microscopy, and release kinetics of the adsorbed drug were also evaluated by in vitro dissolution tests. The dissolution of nimesulide from loaded aerogel is much faster than dissolution of crystalline nimesulide. Around 80% of nimesulide dissolves from the aerogel within 6 minutes, whereas dissolving 80% of the crystalline drug takes about 90 min.
机译:超临界吸附与二氧化硅气凝胶的高吸附能力相结合,可以制备水溶性差的药物的新型输送系统。为了克服常规技术的缺点,在常规技术中使用液体溶剂会导致气凝胶多孔结构破裂,在这项工作中,提出了一种从超临界混合物中吸附药物的新方法。从药物在超临界CO2和乙醇中的助溶剂的流体溶液中发生吸附。已开发出固定床吸附设备,以使液相快速混合并在吸附塔中有效接触。乙醇作为助溶剂的使用可以克服由于许多药物在超临界CO2中的低溶解度而导致的超临界吸附的局限性。在40°C下测量一种模型物质尼美舒利的吸附等温线,并通过实验获得穿透曲线。药物在二氧化硅气凝胶中的载药量高达9 wt%。使用扫描电子显微镜对药物复合物进行表征,并通过体外溶出试验评估吸附药物的释放动力学。从负载的气凝胶中溶解尼美舒利比结晶性尼美舒利溶解快得多。在约6分钟内,约80%的尼美舒利从气凝胶中溶解,而溶解80%的结晶药物则需要约90分钟。

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    Caputo G.;

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  • 年度 2013
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  • 原文格式 PDF
  • 正文语种 eng
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