Novartis Pharma AG, Technical R&D, Basel, Switzerland.
Eur J Pharm Biopharm. 2012 May;81(1):214-22. doi: 10.1016/j.ejpb.2012.01.005. Epub 2012 Jan 17.
Wet media milling is an established technique for the commercialized top-down production of nanoparticulate drug suspensions. These drug nanosuspensions can be transferred into the related drug products, like capsules, tablets and injectables. The generation of wear during stirred media milling of a drug compound was investigated for grinding media made from yttrium stabilized zirconia. Drug compound and drug nanosuspension were characterized initially by their mechanical and rheological properties. The generation of wear from grinding media has been investigated simultaneously with the reduction of drug particle size by evaluating several grinding media supplier and diameter as well as process parameters stirrer tip speed and specific energy input. Grinding media quality and process parameters were identified with strong impact on the amount of generated wear and on drug particle size distribution. Wear from grinding media characterized by elemental zirconium and yttrium could be significantly minimized by operating with the favored grinding media quality and with optimal stirrer tip speed and specific energy input. Wear debris, respectively wear particles from grinding media, were identified with respect to morphology and particle size. Finally, the overall contamination by raw materials and by wear during processing characterized by elemental iron, silicium, yttrium and zirconium as well as the mean size of contamination particles are presented for selected drug nanosuspensions.
湿磨法是一种成熟的技术,可用于商业化的自上而下生产纳米药物混悬剂。这些药物纳米混悬剂可以被转化为相关的药物产品,如胶囊、片剂和注射剂。本研究考察了在搅拌介质研磨过程中,氧化钇稳定氧化锆磨介的磨损情况。药物化合物和药物纳米混悬剂最初通过其机械和流变性能进行了表征。通过评估几种磨介供应商和直径以及工艺参数(搅拌器叶片尖端速度和比能量输入)来评估药物粒径的减小,同时研究了磨介磨损的产生。磨介质量和工艺参数对生成的磨损量和药物粒径分布有很大的影响。通过使用优选的磨介质量和最佳的搅拌器叶片尖端速度和比能量输入,可以显著减少由磨介产生的元素锆和钇磨损。分别对磨介的磨损颗粒进行了形貌和粒径的分析。最后,还介绍了选定的药物纳米混悬剂中,在加工过程中原材料和磨损产生的污染(以元素铁、硅、钇和锆以及污染颗粒的平均尺寸表示)的总体情况。