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使用活性炭作为包装成分提高硬胶囊的溶解稳定性。

Enhancing the Dissolution Stability of Hard Gelatin Capsules Using Activated Carbon as a Packaging Component.

机构信息

Analytical Research and Development, Pfizer Worldwide Research and Development, Groton, Connecticut 06340.

Analytical Research and Development, Pfizer Worldwide Research and Development, Groton, Connecticut 06340.

出版信息

J Pharm Sci. 2018 Dec;107(12):3080-3088. doi: 10.1016/j.xphs.2018.08.009. Epub 2018 Aug 23.

Abstract

Hard gelatin capsule (HGC) shells are widely used to encapsulate drugs for oral delivery but are vulnerable to gelatin cross-linking, which can lead to slower and more variable in vitro dissolution rates. Adding proteolytic enzymes to the dissolution medium can attenuate these problems, but this complicates dissolution testing and is only permitted by some regulatory authorities. Here, we expand the scope of our previous work to demonstrate that canisters containing activated carbon (AC) or polymeric films embedded with AC particles can be used as packaging components to attenuate gelatin cross-linking and improve the dissolution stability of hard gelatin-encapsulated products under accelerated International Council for Harmonisation conditions. We packaged acetaminophen and diphenhydramine HCl HGCs with or without AC canisters in induction-sealed high-density polyethylene bottles and with or without AC films in stoppered glass vials and stored these samples at 50°C/75% relative humidity through 3 months and at 40°C/75% relative humidity for 6 months. Samples packaged with AC canisters or AC films dissolved more rapidly than samples packaged without AC when differences were observed. These results demonstrate that different sources and formats of AC can enhance the dissolution stability of HGCs packaged in bottles and other potential packaging systems such as blister cards.

摘要

硬胶囊(HGC)壳广泛用于封装药物以进行口服给药,但易发生明胶交联,从而导致体外溶解速率更慢且更不稳定。在溶解介质中添加蛋白水解酶可以减轻这些问题,但这会使溶解测试变得复杂,并且仅被一些监管机构所允许。在这里,我们扩展了之前的工作范围,证明含有活性炭(AC)的罐或嵌入 AC 颗粒的聚合物薄膜可用作包装组件,以减轻明胶交联并改善在国际协调理事会加速条件下硬明胶胶囊产品的溶解稳定性。我们将含有或不含有 AC 罐的对乙酰氨基酚和盐酸苯海拉明 HGC 封装在感应密封高密度聚乙烯瓶中,并将含有或不含有 AC 薄膜的封装在带塞玻璃小瓶中,并将这些样品在 50°C/75%相对湿度下储存 3 个月,在 40°C/75%相对湿度下储存 6 个月。当观察到差异时,用 AC 罐或 AC 薄膜包装的样品比未用 AC 包装的样品溶解得更快。这些结果表明,不同来源和形式的 AC 可以增强在瓶和其他潜在包装系统(如泡罩卡)中包装的 HGC 的溶解稳定性。

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