Choonara Yahya E, Pillay Viness, Carmichael Trevor, Danckwerts Michael P
University of the Witwatersrand, Department of Pharmacy and Pharmacology, Medical School, 7 York Road, Parktown, 2193, Johannesburg, Gauteng, South Africa.
AAPS PharmSciTech. 2007 Dec 28;8(4):E118. doi: 10.1208/pt0804118.
The objective of this study was to evaluate the effect of 2 independent formulation variables on the drug release from a novel doughnut-shaped minitablet (DSMT) in order to optimize formulations for intraocular drug delivery. Formulations were based on a 3(2) full-factorial design. The 2 independent variables were the concentration of Resomer (% wt/wt) and the type of Resomer grade (RG502, RG503, and RG504), respectively. The evaluated response was the drug release rate constant computed from a referenced marketed product and in vitro drug release data obtained at pH 7.4 in simulated vitreous humor. DSMT devices were prepared containing either of 2 model drugs, ganciclovir or foscarnet, using a Manesty F3 tableting press fitted with a novel central-rod, punch, and die setup. Dissolution data revealed biphasic drug release behavior with 55% to 60% drug released over 120 days. The inherent viscosity of the various Resomer grades and the concentration were significant to achieve optimum release rate constants. Using the resultant statistical relationships with the release rate constant as a response, the optimum formulation predicted for devices formulated with foscarnet was 70% wt/wt of Resomer RG504, while 92% wt/wt of Resomer RG503 was ideal for devices formulated with ganciclovir. The results of this study revealed that the full-factorial design was a suitable tool to predict an optimized formulation for prolonged intraocular drug delivery.
本研究的目的是评估两个独立的制剂变量对新型甜甜圈形状的迷你片(DSMT)药物释放的影响,以优化眼内给药的制剂。制剂基于3(2)全因子设计。两个独立变量分别是聚交酯(%重量/重量)的浓度和聚交酯等级的类型(RG502、RG503和RG504)。评估的响应是根据参考市售产品和在pH 7.4的模拟玻璃体液中获得的体外药物释放数据计算得出的药物释放速率常数。使用配备新型中心杆、冲头和模具装置的曼esty F3压片机,制备了含有两种模型药物之一(更昔洛韦或膦甲酸)的DSMT装置。溶出数据显示出双相药物释放行为,在120天内释放了55%至60%的药物。各种聚交酯等级的特性粘度和浓度对于实现最佳释放速率常数具有重要意义。以释放速率常数作为响应,利用所得的统计关系,预测用膦甲酸配制的装置的最佳制剂为70%重量/重量的聚交酯RG504,而用更昔洛韦配制的装置理想的是92%重量/重量的聚交酯RG503。本研究结果表明,全因子设计是预测用于延长眼内药物递送的优化制剂的合适工具。