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选择合适的聚合物用于超临界流体辅助制备卡维地洛固体分散体。

Selection of the suitable polymer for supercritical fluid assisted preparation of carvedilol solid dispersions.

机构信息

University of Belgrade, Faculty of Pharmacy, Vojvode Stepe 450, 11221 Belgrade, Serbia.

University of Belgrade, Faculty of Technology and Metallurgy, Karnegijeva 4, 11120 Belgrade, Serbia.

出版信息

Int J Pharm. 2019 Jan 10;554:190-200. doi: 10.1016/j.ijpharm.2018.11.015. Epub 2018 Nov 8.

Abstract

Solid dispersions production is one of the substantial approaches for improvement of poor drug solubility. Additionally, supercritical fluid assisted method for preparation of solid dispersions can offer many advantages in comparison to the conventional melting or solvent-evaporation methods. Miscibility analysis provides valuable guidance for selection of the most appropriate polymeric carrier for dispersion of the drug of interest. In addition to the increased drug release rate, solid dispersions should have proper mechanical attributes in order to be successfully formulated in the final solid dosage form such as tablet. Therefore, several pharmaceutical grade polymers have been selected for development of BCS Class II drug carvedilol (CARV) solid dispersions. They were compared based on behavior in supercritical CO and affinity towards CARV calculated from the miscibility analysis. By utilization of the supercritical CO assisted method, solid dispersions of CARV with the selected (co)polymers (polyvinylpyrrolidone (PVP), hydroxypropyl methylcellulose (HPMC), Soluplus® and Eudragit®) were obtained. Properties of the prepared CARV-polymer dispersions were observed by the polarizing and scanning electron microscopy and analyzed by differential scanning calorimetry and Fourier transform infrared spectroscopy. CARV was additionally characterized by X-ray powder diffraction. Furthermore, in vitro dissolution studies and dynamic compaction analysis were performed on the selected samples of solid dispersions. Among the studied polymers, PVP and HPMC have been identified as polymers with the highest affinity towards CARV, based on the calculated δ values. This has been also confirmed with the highest dissolution efficiency of CARV-PVP and CARV-HPMC solid dispersions. Solid state characterization indicated that CARV was dispersed either molecularly, or in the amorphous form, depending on interactions with each polymer. Determination of CARV-PVP and CARV-HPMC mechanical properties revealed that CARV-PVP solid dispersion has superior compactibility and tabletability. Therefore, CARV-PVP solid dispersion has been highlighted as the most appropriate for the further development of tablets as the final dosage form. Presented study provides an example for efficient approach for development of poorly soluble drug solid dispersion with satisfactory tableting properties.

摘要

固体分散体的制备是改善药物溶解度差的主要方法之一。此外,与传统的熔融或溶剂蒸发方法相比,超临界流体辅助法制备固体分散体具有许多优势。溶混性分析为选择最适合分散目标药物的聚合物载体提供了有价值的指导。除了提高药物释放速率外,固体分散体还应具有适当的机械特性,以便成功地配制成最终的固体剂型,如片剂。因此,选择了几种医药级聚合物来开发 BCS 类 II 药物卡维地洛(CARV)的固体分散体。根据在超临界 CO 中的行为以及从溶混性分析计算出的对 CARV 的亲和力对它们进行了比较。通过利用超临界 CO 辅助法,获得了 CARV 与所选(共)聚合物(聚乙烯吡咯烷酮(PVP)、羟丙基甲基纤维素(HPMC)、Soluplus®和 Eudragit®)的固体分散体。通过偏光和扫描电子显微镜观察了制备的 CARV-聚合物分散体的性质,并通过差示扫描量热法和傅里叶变换红外光谱进行了分析。此外,还对选定的固体分散体样品进行了体外溶出度研究和动态压缩分析。在所研究的聚合物中,根据计算出的δ值,PVP 和 HPMC 被确定为对 CARV 具有最高亲和力的聚合物。这也得到了 CARV-PVP 和 CARV-HPMC 固体分散体具有最高的 CARV 溶解效率的证实。固态特性表明,CARV 要么以分子形式,要么以无定形形式分散,这取决于与每种聚合物的相互作用。测定 CARV-PVP 和 CARV-HPMC 的机械性能表明,CARV-PVP 固体分散体具有更好的可压缩性和可压性。因此,CARV-PVP 固体分散体被突出为最适合进一步开发作为最终剂型的片剂的药物。本研究为开发具有令人满意的压片性能的难溶性药物固体分散体提供了一种有效的方法示例。

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