H Aodah Alhussain, H Fayed Mohamed, Alalaiwe Ahmed, B Alsulays Bader, F Aldawsari Mohammed, Khafagy El-Sayed
Department of Pharmaceutics, College of Pharmacy, Prince Sattam Bin Abdulaziz University, Al-kharj 11942, Saudi Arabia.
Kayyali Chair for Pharmaceutical Industries, Department of Pharmaceutics, College of Pharmacy, King Saud University, Riyadh 11451, Saudi Arabia.
Pharmaceutics. 2020 Jun 27;12(7):598. doi: 10.3390/pharmaceutics12070598.
Compression of cohesive, poorly compactable, and high-dose metformin hydrochloride into the orally disintegrating tablet (ODT) is challenging. The objective of this study was to develop metformin ODT using the moisture activated dry granulation (MADG) process. There are no reports in the literature regarding the development of ODT based on MADG technology. The feasibility of developing metformin ODT was assessed utilizing a 3 full factorial design to elucidate the influence of water amount (X) and the amount of pregelatinized starch (PGS; X) as independent variables on key granules and tablets' characteristics. The prepared granules and tablets were characterized for granule size, bulk density, flow properties, tablets' weight variation, breaking force, friability, capping tendency, in vitro and in vivo disintegration, and drug release. Regression analysis showed that X and X had a significant ( ≤ 0.05) impact on key granules and tablets' properties with a predominant effect of the water amount. Otherwise, the amount of PGS had a pronounced effect on tablet disintegration. Optimized ODT was found to show better mechanical strength, low friability, and short disintegration time in the oral cavity. Finally, this technique is expected to provide better ODT for many kinds of high-dose drugs that can improve the quality of life of patients.
将具有粘性、难以压实且高剂量的盐酸二甲双胍压制成口腔崩解片(ODT)具有挑战性。本研究的目的是采用水分活化干法制粒(MADG)工艺开发二甲双胍ODT。文献中没有关于基于MADG技术开发ODT的报道。利用三因素全因子设计评估开发二甲双胍ODT的可行性,以阐明水量(X₁)和预胶化淀粉(PGS;X₂)用量作为自变量对关键颗粒和片剂特性的影响。对制备的颗粒和片剂进行粒度、堆密度、流动性、片剂重量差异、断裂力、脆碎度、顶裂倾向、体外和体内崩解以及药物释放等方面的表征。回归分析表明,X₁和X₂对关键颗粒和片剂的性质有显著影响(P≤0.05),其中水量的影响占主导。此外,PGS用量对片剂崩解有显著影响。优化后的ODT显示出更好的机械强度、低脆碎度以及在口腔中的短崩解时间。最后,预计该技术可为多种高剂量药物提供更好的ODT,从而改善患者的生活质量。