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采用熔融分散联合表面吸附法的 QbD 方法开发速溶片:氟比洛芬熔融分散颗粒的处方和药代动力学研究。

Quality by design (QbD) approach to develop fast-dissolving tablets using melt-dispersion paired with surface-adsorption method: formulation and pharmacokinetics of flurbiprofen melt-dispersion granules.

机构信息

Department of Pharmaceutics and Drug Delivery, School of Pharmacy, The University of Mississippi, University, MS, 38677, USA.

Department of Pharmaceutics, School of Pharmaceutical Sciences, Lovely Professional University, Phagwara, Punjab, India.

出版信息

Drug Deliv Transl Res. 2023 Dec;13(12):3204-3222. doi: 10.1007/s13346-023-01382-z. Epub 2023 Jul 17.

Abstract

Developing amorphous solid dispersions with good flow properties is always challenging for formulation scientists to convert into tablets. Hence, the present study investigates the impact of the combination of melt-dispersion and surface-adsorption methods to prepare melt-dispersion granules with enhanced dissolution rate and flow properties. This study covers the formulation and pharmacokinetic study of fast-dissolving flurbiprofen tablets using PEG 6000 (hydrophilic carrier) and lactose (adsorbent). Response surface methodology (RSM) using the central composite design (CCD) was used to optimize independent variables like carrier concentrations and adsorbent concentrations, and their interactions with the dependent variables (responses), including solubility, angle of repose, Carr's index, and cumulative % drug release, were investigated. The optimized formulation was selected based on the numerical optimization method and further investigated for FTIR spectroscopy, differential scanning calorimetry, and X-ray diffractometry. Then, the optimized formulation was compressed into tablets and evaluated for both in vitro dissolution and in vivo pharmacokinetics parameters. In vitro dissolution studies revealed that the prepared fast-dissolving tablets released the drug entirely within 15 min (Q of F4 tablets: 99.34 ± 1.24%), whereas conventional tablets took around 60 min for complete dissolution. Pharmacokinetic studies in rats revealed that fast-dissolving tablets showed 1.38-fold higher peak-plasma concentration (C) and 1.39-fold higher bioavailability than conventional tablets. Overall, this study revealed the successful fabrication of fast-dissolving tablets via melt-dispersion paired with the surface-adsorption method to enhance the flow properties and the dissolution rate.

摘要

开发具有良好流变性的无定形固体分散体一直是配方科学家将其转化为片剂的挑战。因此,本研究探讨了熔融分散和表面吸附方法相结合制备熔融分散颗粒以提高溶解速率和流变性的影响。本研究涵盖了使用 PEG 6000(亲水性载体)和乳糖(吸附剂)制备快速溶解氟比洛芬片剂的配方和药代动力学研究。使用中心复合设计(CCD)的响应面法(RSM)用于优化独立变量,如载体浓度和吸附剂浓度,以及它们与依赖变量(响应)的相互作用,包括溶解度、休止角、卡尔指数和累积%药物释放。基于数值优化方法选择优化的配方,并进一步对其进行傅里叶变换红外光谱、差示扫描量热法和 X 射线衍射分析。然后,将优化的配方压缩成片剂,并对其进行体外溶出度和体内药代动力学参数进行评估。体外溶出度研究表明,所制备的快速溶解片剂在 15 分钟内完全释放药物(F4 片剂的 Q 值:99.34±1.24%),而常规片剂则需要大约 60 分钟才能完全溶解。在大鼠中的药代动力学研究表明,快速溶解片剂的峰血浆浓度(C)和生物利用度分别比常规片剂高 1.38 倍和 1.39 倍。总的来说,本研究通过熔融分散与表面吸附相结合的方法成功制备了快速溶解片剂,以提高其流动性和溶解速率。

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