In order to improve the dissolution properties of poorly water-soluble drugs, some drugs were subjected to micronization or prepared as composite particles using supercritical fluid (SCF) technology with carbon dioxide (CO(2)). Solubility in CO(2) is the key when using this method. Solubility affects the supersaturation of the materials in the solvent as well as the mass transfer of that solvent, which are both critical to the micronization of the materials and the formation of the composite particles. Some useful techniques that can be used to avoid the problems posed by the characteristics of the drug itself are combining SC-CO(2) with other technologies, such as the formation of coacervates or emulsions, and other equipment types, such as milling or ultrasound fields. Another advantage of SCF technology is that it is considered to be green chemistry. SC-CO(2) can improve the solubility of poorly water-soluble drug substances using few or no organic solvents and with little or no heating.

译文

为了改善水溶性差的药物的溶解性能,使用二氧化碳 (CO(2)) 的超临界流体 (SCF) 技术对某些药物进行微粉化或制备为复合颗粒。在CO(2) 中的溶解度是使用此方法时的关键。溶解度会影响材料在溶剂中的过饱和度以及该溶剂的传质,这对于材料的微粉化和复合颗粒的形成都至关重要。一些可用于避免药物本身特性带来的问题的有用技术是将SC-CO(2) 与其他技术相结合,例如形成聚集体或乳液,以及其他设备类型,例如研磨或超声场。SCF技术的另一个优点是它被认为是绿色化学。SC-CO(2) 可以使用很少或没有有机溶剂以及很少或不加热的情况下提高水溶性差的药物的溶解度。

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