Tran Thao T D, Tran Phuong H L
Institute of Research and Development, Duy Tan University, Danang 550000, Vietnam.
The Faculty of Pharmacy, Duy Tan University, Danang 550000, Vietnam.
Polymers (Basel). 2020 Jul 28;12(8):1679. doi: 10.3390/polym12081679.
In recent decades, solid dispersions have been demonstrated as an effective approach for improving the bioavailability of poorly water-soluble drugs, as have solid dispersion techniques that include the application of nanotechnology. Many studies have reported on the ability to change drug crystallinity and molecular interactions to enhance the dissolution rate of solid dispersions using hydrophilic carriers. However, numerous studies have indicated that insoluble carriers are also promising excipients in solid dispersions. In this report, an overview of solid dispersion strategies involving insoluble carriers has been provided. In addition to the role of solubility and dissolution enhancement, the perspectives of the use of these polymers in controlled release solid dispersions have been classified and discussed. Moreover, the compatibility between methods and carriers and between drug and carrier is mentioned. In general, this report on solid dispersions using insoluble carriers could provide a specific approach and/or a selection of these polymers for further formulation development and clinical applications.
近几十年来,固体分散体已被证明是提高难溶性药物生物利用度的有效方法,包括应用纳米技术的固体分散技术也是如此。许多研究报道了使用亲水性载体改变药物结晶度和分子相互作用以提高固体分散体溶出速率的能力。然而,大量研究表明,不溶性载体在固体分散体中也是很有前景的辅料。在本报告中,对涉及不溶性载体的固体分散策略进行了概述。除了溶解度和溶出增强的作用外,还对这些聚合物在控释固体分散体中的应用前景进行了分类和讨论。此外,还提到了方法与载体之间以及药物与载体之间的相容性。总体而言,这份关于使用不溶性载体的固体分散体的报告可为进一步的制剂开发和临床应用提供一种具体方法和/或这些聚合物的选择。