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Pharmaceutical Dispersion Techniques for Dissolution and Bioavailability Enhancement of Poorly Water-Soluble Drugs

机译:不良水溶性药物的溶解和生物利用度提高的药物分散技术

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摘要

Over the past decades, a large number of drugs as well as drug candidates with poor dissolution characteristics have been witnessed, which invokes great interest in enabling formulation of these active ingredients. Poorly water-soluble drugs, especially biopharmaceutical classification system (BCS) II ones, are preferably designed as oral dosage forms if the dissolution limit can be broken through. Minimizing a drug’s size is an effective means to increase its dissolution and hence the bioavailability, which can be achieved by specialized dispersion techniques. This article reviews the most commonly used dispersion techniques for pharmaceutical processing that can practically enhance the dissolution and bioavailability of poorly water-soluble drugs. Major interests focus on solid dispersion, lipid-based dispersion (nanoencapsulation), and liquisolid dispersion (drug solubilized in a non-volatile solvent and dispersed in suitable solid excipients for tableting or capsulizing), covering the formulation development, preparative technique and potential applications for oral drug delivery. Otherwise, some other techniques that can increase the dispersibility of a drug such as co-precipitation, concomitant crystallization and inclusion complexation are also discussed. Various dispersion techniques provide a productive platform for addressing the formulation challenge of poorly water-soluble drugs. Solid dispersion and liquisolid dispersion are most likely to be successful in developing oral dosage forms. Lipid-based dispersion represents a promising approach to surmounting the bioavailability of low-permeable drugs, though the technique needs to traverse the obstacle from liquid to solid transformation. Novel dispersion techniques are highly encouraged to develop for formulation of poorly water-soluble drugs.
机译:在过去的几十年中,已经见证了许多药物以及溶解特性差的候选药物,这引起了人们对使这些活性成分配制的极大兴趣。如果可以突破溶解极限,则水溶性较差的药物,尤其是生物药物分类系统(BCS)II的药物,优选设计为口服剂型。最小化药物的大小是增加其溶出度并因此提高其生物利用度的有效手段,这可以通过专门的分散技术来实现。本文介绍了最常用于药物加工的分散技术,该技术可实际上提高水溶性差的药物的溶解度和生物利用度。主要兴趣集中在固体分散体,基于脂质的分散体(纳米囊化)和液体固体分散体(药物溶解在非挥发性溶剂中并分散在合适的固体赋形剂中以制成片剂或胶囊剂),涉及制剂开发,制备技术和潜在的应用领域。口服药物递送。否则,还将讨论一些其他可提高药物分散性的技术,例如共沉淀,伴随结晶和包合复合物。各种分散技术为解决水溶性差的药物的配方挑战提供了一个生产平台。固体分散体和液体固体分散体最有可能成功开发口服剂型。基于脂质的分散体是克服低渗透性药物生物利用度的一种有前途的方法,尽管该技术需要穿越从液体到固体转化的障碍。强烈鼓励开发新的分散技术来配制水溶性差的药物。

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