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与硬明胶胶囊相比,胶囊壳组成对羟丙甲纤维素胶囊性能指标的影响。

Influence of capsule shell composition on the performance indicators of hypromellose capsule in comparison to hard gelatin capsules.

作者信息

Al-Tabakha Moawia M, Arida Adi Issam, Fahelelbom Khairi M S, Sadek Bassem, Saeed Dima Ahmed, Abu Jarad Rami A, Jawadi Jeevani

机构信息

a Pharmaceutical Sciences Unit , College of Pharmacy, Al-Ain University of Science and Technology , Al-Ain , United Arab Emirates .

b School of Health and Environmental Studies, Hamdan Bin Mohammed Smart University, Dubai Academic City , Dubai , United Arab Emirates , and.

出版信息

Drug Dev Ind Pharm. 2015;41(10):1726-37. doi: 10.3109/03639045.2014.1002409. Epub 2015 Jan 14.

Abstract

The purpose of this study was to assess the in vitro performances of "vegetable" capsules in comparison to hard gelatin capsules in terms of shell weight variation, reaction to different humidity conditions, resistance to stress in the absence of moisture, powder leakage, disintegration and dissolution. Two types of capsules made of HPMC produced with (Capsule 2) or without (Capsule 3) a gelling agent and hard gelatin capsules (Capsule 1) were assessed. Shell weight variability was relatively low for all tested capsules shells. Although Capsule 1 had the highest moisture content under different humidity conditions, all capsule types were unable to protect the encapsulated hygroscopic polyvinylpyrrolidone (PVP) powder from surrounding humidity. The initial disintegration for all Capsule 1 occurred within 3 min, but for other types of capsules within 6 min (n = 18). Dissolution of acetaminophen was better when the deionized water (DIW) temperature increased from 32 to 42 °C in case of Capsule 1, but the effect of temperature was not significant for the other types of capsules. Acetaminphen dissolution from Capsule 1 was the fastest (i.e. >90% in 10 min) and independent of the media pH or contents unlike Capsule 2 which was influenced by the pH and dissolution medium contents. It is feasible to use hypromellose capsules shells with or without gelling agent for new lines of pharmaceutical products, however, there is a window for capsule shells manufacturing companies to improve the dissolution of their hypromellose capsules to match the conventional gelatin capsule shells and eventually replace them.

摘要

本研究的目的是评估“植物”胶囊与硬明胶胶囊相比,在壳重变化、对不同湿度条件的反应、在无水分情况下的抗应力能力、粉末泄漏、崩解和溶解方面的体外性能。评估了两种由羟丙基甲基纤维素(HPMC)制成的胶囊,一种添加了胶凝剂(胶囊2),另一种未添加胶凝剂(胶囊3),以及硬明胶胶囊(胶囊1)。所有测试的胶囊壳的壳重变异性相对较低。尽管在不同湿度条件下胶囊1的水分含量最高,但所有类型的胶囊都无法保护包封的吸湿性聚乙烯吡咯烷酮(PVP)粉末免受周围湿度的影响。所有胶囊1的初始崩解在3分钟内发生,但其他类型的胶囊在6分钟内发生(n = 18)。对于胶囊1,当去离子水(DIW)温度从32℃升高到42℃时,对乙酰氨基酚的溶解更好,但温度对其他类型的胶囊影响不显著。与受pH值和溶解介质成分影响的胶囊2不同,胶囊1中对乙酰氨基酚的溶解最快(即在10分钟内>90%),且与介质pH值或内容物无关。使用含或不含胶凝剂的羟丙基甲基纤维素胶囊壳用于新的药品生产线是可行的,然而,胶囊壳制造公司仍有改进其羟丙基甲基纤维素胶囊溶解性能以匹配传统明胶胶囊壳并最终取代它们的空间。

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