Jannin V, Pochard E, Chambin O
Pharmaceutical Development Laboratory, Gattefossé S.A.S., BP 603, F-69804 Saint-Priest Cedex, France.
Int J Pharm. 2006 Feb 17;309(1-2):6-15. doi: 10.1016/j.ijpharm.2005.10.042. Epub 2005 Dec 20.
Lipid excipients are usually used for the development of sustained-release formulations. When used in relatively high quantities, Precirol ATO 5 imparts sustained-release properties to solid oral dosage forms, by forming a lipid matrix. To control or adjust the drug release kinetics from such lipid matrix however, one must often resort to complementary ingredients or techniques. This study investigates the influence of poloxamers (Lutrol) included in lipid matrices composed of glyceryl palmitostearate (Precirol ATO 5) on their dissolution performance and their stability. The addition of these hydrophilic polymers in the lipid matrix increased the amount of theophylline released thanks to the swelling of the hydrophilic polymer and the creation of a porous network into the inert lipid matrix. The grade and the quantity of Lutrol could modulate the extent of drug release. Theophylline was released mainly by the matrix erosion but also by diffusion through the pores as suggested by the Peppas' model. Moreover, the addition of Lutrol enhanced the stability during storage. The theophylline release was quite steady after 6 months in different conditions (temperature and humidity). Thus, the mixture of glyceryl palmitostearate and poloxamers is an approach with many advantages for the development of controlled-release formulations by capsule molding.
脂质辅料通常用于缓释制剂的开发。当大量使用时,Precirol ATO 5通过形成脂质基质赋予固体口服剂型缓释特性。然而,为了控制或调节药物从这种脂质基质中的释放动力学,人们通常必须借助辅助成分或技术。本研究考察了泊洛沙姆( Lutrol)添加到由甘油棕榈酸硬脂酸酯(Precirol ATO 5)组成的脂质基质中对其溶出性能和稳定性的影响。由于亲水性聚合物的溶胀以及在惰性脂质基质中形成多孔网络,在脂质基质中添加这些亲水性聚合物增加了茶碱的释放量。Lutrol的级别和用量可以调节药物释放程度。如Peppas模型所示,茶碱主要通过基质侵蚀释放,但也通过孔隙扩散释放。此外,添加Lutrol提高了储存期间的稳定性。在不同条件(温度和湿度)下放置6个月后,茶碱释放相当稳定。因此,甘油棕榈酸硬脂酸酯和泊洛沙姆的混合物是一种通过胶囊成型开发控释制剂具有诸多优势的方法。