Khaled Shaban A, Burley Jonathan C, Alexander Morgan R, Roberts Clive J
Laboratory of Biophysics and Surface Analysis, School of Pharmacy, The University of Nottingham, Nottingham NG7 2RD, UK.
Laboratory of Biophysics and Surface Analysis, School of Pharmacy, The University of Nottingham, Nottingham NG7 2RD, UK; Nottingham Nanotechnology and Nanoscience Centre, The University of Nottingham, Nottingham NG7 2RD, UK.
Int J Pharm. 2014 Jan 30;461(1-2):105-11. doi: 10.1016/j.ijpharm.2013.11.021. Epub 2013 Nov 23.
Three dimensional (3D) printing was used as a novel medicine formulation technique for production of viable tablets capable of satisfying regulatory tests and matching the release of standard commercial tablets. Hydroxypropyl methylcellulose (HPMC 2208) (Methocel™ K100M Premium) and poly(acrylic acid) (PAA) (Carbopol(®) 974P NF) were used as a hydrophilic matrix for a sustained release (SR) layer. Hypromellose(®) (HPMC 2910) was used as a binder while microcrystalline cellulose (MCC) (Pharmacel(®) 102) and sodium starch glycolate (SSG) (Primojel(®)) were used as disintegrants for an immediate release (IR) layer. Commercial guaifenesin bi-layer tablets (GBT) were used as a model drug (Mucinex(®)) for this study. There was a favourable comparison of release of the active guaifenesin from the printed hydrophilic matrix compared with the commercially available GBT. The printed formulations were also evaluated for physical and mechanical properties such as weight variation, friability, hardness and thickness as a comparison to the commercial tablet and were within acceptable range as defined by the international standards stated in the United States Pharmacopoeia (USP). All formulations (standard tablets and 3D printed tablets) showed Korsmeyer-Peppas n values between 0.27 and 0.44 which indicates Fickian diffusion drug release through a hydrated HPMC gel layer.
三维(3D)打印被用作一种新型药物制剂技术,用于生产能够通过监管测试并与标准商业片剂释放特性相匹配的活性片剂。羟丙基甲基纤维素(HPMC 2208)(美多秀™K100M优质型)和聚丙烯酸(PAA)(卡波姆(®)974P NF)被用作缓释(SR)层的亲水性基质。羟丙甲纤维素(®)(HPMC 2910)用作粘合剂,而微晶纤维素(MCC)(法玛纤维素(®)102)和淀粉乙醇酸钠(SSG)(普丽莫杰(®))用作速释(IR)层的崩解剂。市售愈创甘油醚双层片(GBT)(沐舒坦(®))用作本研究的模型药物。与市售GBT相比,从打印的亲水性基质中释放活性愈创甘油醚的情况比较良好。还对打印制剂的物理和机械性能进行了评估,如重量差异、脆碎度、硬度和厚度,并与商业片剂进行比较,结果在《美国药典》(USP)规定的国际标准所定义的可接受范围内。所有制剂(标准片剂和3D打印片剂)的Korsmeyer-Peppas n值在0.27至0.44之间,这表明药物通过水合HPMC凝胶层以菲克扩散方式释放。