a Biopharmaceutics and Pharmaceutical Technology Department , Auvergne University , Clermont-Ferrand , France.
b Biopharmacy Department, Faculty of Pharmacy , Auvergne University , Clermont-Ferrand , France.
Pharm Dev Technol. 2018 Jul;23(6):655-662. doi: 10.1080/10837450.2017.1356331. Epub 2017 Jul 26.
Different previous works have shown that various kinds of spheres can be manufactured by rotor granulation in a 'single-pot process' using a lipid base: hydrogenated castor oil. This single-pot technology is based on wet granulation where all components are placed in the powder form in the rotor bowl; then, they are continuously suspended in a fluidized air, with a tangentially sprayed liquid solution. This process allows the granulation and manufacturing of sphere during the same time. Previous experiments have studied the influence of the formulation and the manufacturing process parameters on spheres in terms of feasibility and dissolution properties. Both the spraying time and the weight of liquid sprayed were found to be the most relevant parameters that govern the final quality of the sphere. Now, in a second part of the work, a first comparison is made with two different fluid bed methods: the tangential rotor spray and the Wurster bottom spray for coating the lipid spheres previously manufactured with the rotor tangential spray. The external aspect of the coated spheres manufactured has been evaluated with an electronic microscopy analysis and a study of dissolution properties of the active ingredient has been done by USP in vitro dissolution tests.
不同的先前工作已经表明,可以使用氢化蓖麻油作为脂质基底,通过转子造粒在“一锅法”中制造各种球体。这种单锅技术基于湿法制粒,其中所有成分都以粉末形式置于转子碗中;然后,它们连续悬浮在流化空气中,同时喷射切线液体溶液。该工艺允许在同一时间进行造粒和球体制造。先前的实验已经研究了配方和制造工艺参数对球体的可行性和溶解性能的影响。发现喷雾时间和喷雾液体的重量是控制球体最终质量的最相关参数。现在,在工作的第二部分,首先与两种不同的流化床方法进行了比较:切线转子喷雾和 Wurster 底部喷雾,用于涂覆先前使用切线转子喷雾制造的脂质球体。通过电子显微镜分析评估了涂覆球体的外部外观,并通过 USP 体外溶解试验研究了活性成分的溶解性能。