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Supercritical fluid-mediated methods to encapsulate drugs: recent advances and new opportunities

机译:超临界流体介导的包裹药物的方法:最新进展和新机遇

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摘要

With the advent of the development of novel pharmaceutical products and therapies, there is a need for effective delivery of these products to patients. Dependent on whether they are small-molecular weight drugs or biologics, many new compounds may suffer from poor solubility, poor stability or require frequent administration and therefore require optimized delivery. For example, the utilization of polymorphism and the enhanced solubility in the amorphous state is being exploited to improve the dissolution of small-molecular weight poorly soluble drugs. This can be achieved by the formation of solid dispersions in water-soluble matrices. In addition, encapsulation in biodegradable polymeric materials is one potential route to reduce the frequency of administration through the formation of sustained-release formulations. This is desirable for biologics, for example, which generally require administration once or twice daily. Supercritical fluid processing can achieve both of these outcomes, and this review focuses on the use of supercritical CO_2 to encapsulate active pharmaceutical ingredients to enhance solubility or achieve sustained release. Using supercritical CO_2-mediated processes provides a clean and potentially solvent-free route to prepare novel drug products and is therefore an attractive alternative to conventional manufacturing technologies.
机译:随着新型药物产品和疗法的发展的到来,需要将这些产品有效地递送给患者。取决于它们是小分子量药物还是生物制剂,许多新化合物可能会出现溶解性差,稳定性差或需要频繁给药的情况,因此需要优化递送。例如,正在利用多态性和在非晶态下增加的溶解度来改善小分子量难溶药物的溶解。这可以通过在水溶性基质中形成固体分散体来实现。另外,在可生物降解的聚合物材料中的包封是通过形成持续释放制剂来降低给药频率的一种潜在途径。例如,这对于通常需要每天给药一次或两次的生物制剂是理想的。超临界流体处理可以实现这两个结果,并且本文的重点是使用超临界CO_2封装活性药物成分以增强溶解性或实现持续释放。使用超临界CO_2介导的工艺可提供清洁且可能无溶剂的路线来制备新型药物产品,因此是常规制造技术的有吸引力的替代方法。

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