Department of Pharmacy, School of Applied Sciences, University of Huddersfield, Queensgate, Huddersfield HD1 3DH, United Kingdom.
Department of Pharmacy, School of Applied Sciences, University of Huddersfield, Queensgate, Huddersfield HD1 3DH, United Kingdom.
Eur J Pharm Biopharm. 2019 Nov;144:174-179. doi: 10.1016/j.ejpb.2019.09.015. Epub 2019 Sep 18.
Capsules are a widely used oral dosage form due to their simplicity and ease of manufacture. They are equally popular for both pharmaceutical and nutraceutical products and since they do not need extensive formulation development, it is a dosage form of choice for new drugs undergoing animal or clinical trials. In addition to the standard hard-gelatin or cellulose-based vegetarian capsules, functional capsules such as those with built-in gastroresistance would be of great value. In this work, commonly used enteric polymers were investigated for the production of hard-capsules. The polymers used in this study included cellulose derivatives (HPMC AS-LF and HP-55) and acrylic/methacrylic acid derivatives (EUDRAGIT L100 and S100). A range of concentrations of polymers and plasticisers were tested to optimise the formulation for the production of capsule shells with desirable physicochemical and gastroresistance characteristics. Drug release from optimised capsules produced from HPMC AS-LF, HP-55, EUDRAGIT L100 and S100 was shown to be comparable to drug release from corresponding polymer-coated tablets in both compendial and physiological bicarbonate buffer. In summary, herein we report a simple method for producing enteric capsule shells which do not need an additional coating step which, if validated at large scale, can significantly reduce the cost of manufacturing of conventional enteric coated dosage forms. These capsules are also likely to improve the inter-tablet variability in post-gastric drug release inherent in conventional dosage forms due to coating variability.
胶囊因其简单易用的制造工艺而被广泛应用于口服剂型。无论是制药还是营养保健品,胶囊都同样受欢迎,而且由于不需要进行广泛的配方开发,因此对于正在进行动物或临床试验的新药来说,它是一种首选的剂型。除了标准的硬明胶或纤维素素食胶囊外,具有内置胃耐受力的功能性胶囊(如肠溶胶囊)将具有巨大的价值。在这项工作中,研究了常用的肠溶聚合物来生产硬胶囊。本研究中使用的聚合物包括纤维素衍生物(HPMC AS-LF 和 HP-55)和丙烯酸/甲基丙烯酸衍生物(EUDRAGIT L100 和 S100)。测试了一系列聚合物和增塑剂的浓度,以优化用于生产具有理想理化性质和胃耐受力特征的胶囊壳的配方。从 HPMC AS-LF、HP-55、EUDRAGIT L100 和 S100 优化的胶囊中释放的药物与相应聚合物包衣片剂在药典和生理碳酸氢盐缓冲液中的药物释放相当。总之,本文报道了一种简单的生产肠溶胶囊壳的方法,无需额外的涂层步骤,如果在大规模生产中得到验证,这可以显著降低传统肠溶包衣剂型的生产成本。由于涂层的变异性,这些胶囊还可能改善传统剂型中胃后药物释放的片剂间变异性。