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应用近红外光谱法根据造粒机理优化片剂的溶出曲线。

Application of near-infrared spectroscopy to optimize dissolution profiles of tablets according to the granulation mechanism.

机构信息

a Formulation Research, PST CFU, Medicine Development Center , Eisai Co., Ltd. , Kakamigahara-shi , Gifu , Japan.

b Research Institute of Pharmaceutical Sciences, Faculty of Pharmacy , Musashino University , Tokyo , Japan.

出版信息

Drug Dev Ind Pharm. 2018 May;44(5):713-722. doi: 10.1080/03639045.2017.1411938. Epub 2017 Dec 14.

Abstract

We developed a method for the optimization of dissolution properties of solid oral dosage forms manufacturing using high shear wet granulation (HSWG) by using near-infrared spectroscopy (NIRS) with chemometrics in small-scale experiments. The changes in rheology and NIR spectra of the granules were monitored to verify the granulation mechanism and determine the suitable water amount for model formulation during the HSWG. Tablets were manufactured by altering the added water amount to investigate the impact of the granulation mechanism on drug product qualities. Model formulation granules were prepared with 10-20% w/w water in a funicular state, corresponding to the plateau region in score plots obtained by principal component analysis (PCA). The dissolution rate of model formulation tablets manufactured with more than 20% w/w of water was significantly delayed while tablets manufactured with 15% w/w water showed 100% dissolution at 15 min. NIRS and PCA are applicable to the optimization of dissolution properties via the process understanding of HSWG at the early formulation development stage and could facilitate drug development.

摘要

我们开发了一种使用近红外光谱(NIRS)结合化学计量学在小规模实验中优化固体制剂溶出性能的方法,该方法使用高剪切湿法制粒(HSWG)。监测颗粒的流变学和 NIR 光谱变化,以验证造粒机制,并确定 HSWG 期间模型配方的合适加水量。通过改变加入的水量来制造片剂,以研究造粒机制对药物产品质量的影响。在丝状状态下用 10-20%w/w 的水制备模型配方颗粒,对应于主成分分析(PCA)得分图中获得的平台区域。用超过 20%w/w 的水制造的模型配方片剂的溶出速率明显延迟,而用 15%w/w 的水制造的片剂在 15 分钟内达到 100%溶解。NIRS 和 PCA 适用于通过在早期配方开发阶段对 HSWG 的工艺理解来优化溶出性能,并有助于药物开发。

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