Department of Pharmaceutics, Faculty of Pharmacy and Pharmaceutical Sciences, University of Karachi, Karachi, 75270, Pakistan.
Bioavailability and Bioequivalence Research Facility, Faculty of Pharmacy and Pharmaceutical Sciences, University of Karachi, Karachi, 75270, Pakistan.
Sci Rep. 2023 Sep 26;13(1):16070. doi: 10.1038/s41598-023-43423-0.
A taste-masked chewable tablet of ciprofloxacin using ion exchange resin Kyron T-134 for enhancing compliance for the paediatric population was developed. The drug-to-resin ratio was optimized for maximum taste masking by studying the effects of soaking time (X1) and mixing time (X2) on complexation (%) using Central Composite Rotatable Design (CCRD). The resin complexes were characterized by bitterness score, DSC, FTIR, and PXRD. The complex was further formulated and optimized into chewable tablets through full factorial design, The optimized formulation was subjected to a bioequivalence study, and a virtual approach of PBPK modelling was adapted to predict the pharmacokinetics of the drug in the paediatric group. The drug resin ratio of 1:1.5 yielded an optimum drug loading of 99.05%. The optimized formulation shows minimum disintegration time with more than 99% drug release within 30 min. The formulation F-9 was found to be bioequivalent with a geometric mean ratio of C, T, AUC, and AUC within 90% CI. It was concluded that quality by design approach can successfully be applied to optimize the drug resin ratio and PBPK modeling is a successful predictive tool for estimating the pharmacokinetics of ciprofloxacin HCl in the paediatric population.
开发了一种使用离子交换树脂 Kyron T-134 掩味的可咀嚼型环丙沙星片剂,以提高儿科人群的顺应性。通过研究浸泡时间(X1)和混合时间(X2)对络合百分率的影响,采用中心组合旋转设计(CCRD)优化了药物与树脂的比例,以实现最大的掩味效果。用苦味评分、DSC、FTIR 和 PXRD 对树脂复合物进行了表征。通过完全析因设计将复合物进一步配制成可咀嚼片,并对优化的配方进行了生物等效性研究,并采用虚拟 PBPK 建模方法预测了该药物在儿科人群中的药代动力学。药物与树脂的比例为 1:1.5 时,药物的载药量最佳,为 99.05%。优化的配方具有最短的崩解时间,在 30 分钟内释放超过 99%的药物。配方 F-9 被发现与 C、T、AUC 和 AUC 的几何平均比值具有生物等效性,在 90%置信区间内。结论是,质量源于设计方法可成功用于优化药物树脂比,而 PBPK 建模是一种成功的预测工具,可用于估算环丙沙星盐酸盐在儿科人群中的药代动力学。