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Formulation-dependent Stability Mechanisms Affecting Dissolution Performance of Directly Compressed Griseofulvin Tablets

International Journal of Pharmaceutics(2023)SCI 2区

Univ Strathclyde

Cited 7|Views19
Abstract
During drug product development, stability studies are used to ensure that the safety and efficacy of a product are not affected during storage. Any change in the dissolution performance of a product must be investigated, as this may indicate a change in the bioavailability. In this study, three different griseofulvin formulations were prepared containing microcrystalline cellulose (MCC) with either mannitol, lactose monohydrate, or dibasic calcium phosphate anhydrous (DCPA). The tensile strength, porosity, contact angle, disintegration time, and dissolution rate were measured after storage under five different accelerated temperature and humidity conditions for 1, 2, and 4 weeks. The dissolution rate was found to decrease after storage for all three batches, with the change in dissolution rate strongly correlating with the storage humidity. The changes in physical properties of each formulation were found to relate to either the premature swelling (MCC/DCPA, MCC/lactose) or dissolution (MCC/mannitol) of particles during storage. These results are also discussed with consideration of the performance-and stability-controlling mechanisms of placebo tablets of the same formulations (Maclean et al., 2021; Maclean et al., 2022).
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Key words
Physical stability,Accelerated stability,Dissolution,Physical properties of tablets,Solid oral dosage forms
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要点】:本文研究了不同辅料对直接压缩制备的灰黄霉素片剂在加速存储条件下溶解性能稳定性的影响,揭示了辅料与稳定性之间的关联机制。

方法】:通过改变灰黄霉素片剂的辅料(包括甘露醇、乳糖一水合物和无水二磷酸钙),研究了存储条件对片剂物理性质(抗张强度、孔隙率、接触角、崩解时间和溶解速率)的影响。

实验】:在五种不同的加速温度和湿度条件下,对三个批次的灰黄霉素片剂进行存储实验,存储时间为1、2和4周,并记录了溶解速率的变化。实验使用的数据集包括不同时间点下各物理性质和溶解性能的测量结果。