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明胶、HPMC 和普鲁兰硬胶囊的吸湿和解吸特性。

Moisture sorption and desorption properties of gelatin, HPMC and pullulan hard capsules.

机构信息

School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, China.

School of Pharmacy and Chemistry, Dali University, Yunnan Province 671003, China; School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, China.

出版信息

Int J Biol Macromol. 2020 Sep 15;159:659-666. doi: 10.1016/j.ijbiomac.2020.05.110. Epub 2020 May 19.

Abstract

The moisture sorption and desorption properties of hard capsules have a great influence on the quality of capsule products. However, studies on them have rarely been reported. Herein, we studied the moisture sorption and desorption properties of three kinds of hard capsules (gelatin, hydroxypropyl methyl cellulose (HPMC) and pullulan capsules) in terms of hygroscopicity, crystallinity, thermal behaviors and so on. It is found that HPMC capsules have weaker moisture sorption ability and moisture keeping ability than pullulan or gelatin capsules with lower moisture sorption rates, equilibrium moisture contents, moisture keeping rates and higher critical relative humidity. In comparison with gelatin capsules, pullulan capsules have weaker moisture sorption ability and comparable moisture keeping ability. HPMC or pullulan capsules can more effectively protect high, moderate and low hygroscopic capsule contents (chitosan, potato starch or ethyl cellulose) from outside moisture absorption. The diffraction peaks of the moisture equilibrated gelatin, HPMC and pullulan capsules are much smaller than those of their dried ones. The dried and the moisture equilibrated gelatin, HPMC or pullulan capsules all have smooth surface morphology. HPMC or pullulan capsules can be an attractive alternative to animal gelatin capsules due to their appropriate moisture sorption and desorption properties.

摘要

硬胶囊的吸湿性和脱湿性对胶囊产品的质量有很大的影响。然而,对其的研究却很少有报道。本文从吸湿性、结晶性、热行为等方面研究了三种硬胶囊(明胶、羟丙基甲基纤维素(HPMC)和普鲁兰胶囊)的吸湿性和脱湿性。结果表明,HPMC 胶囊比普鲁兰或明胶胶囊具有更低的吸湿性、平衡水分含量、保水性和更高的临界相对湿度,因此其吸湿性和保水性较弱。与明胶胶囊相比,普鲁兰胶囊的吸湿性较弱,但保水性相当。HPMC 或普鲁兰胶囊可以更有效地保护高、中、低吸湿性的胶囊内容物(壳聚糖、马铃薯淀粉或乙基纤维素)免受外部水分的吸收。水分平衡的明胶、HPMC 和普鲁兰胶囊的衍射峰比其干燥时的衍射峰小得多。干燥和水分平衡的明胶、HPMC 或普鲁兰胶囊均具有光滑的表面形态。由于 HPMC 或普鲁兰胶囊具有适当的吸湿性和脱湿性,因此它们可以作为动物明胶胶囊的替代品。

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