Hagedorn Martin, Bögershausen Ansgar, Rischer Matthias, Schubert Rolf, Massing Ulrich
Albert-Ludwigs-Universität Lehrstuhl für Pharmazeutische Technologie und Biopharmazie, Hermann-Herder-Straße 9, D-79104 Freiburg i. Br., Germany; Losan Pharma GmbH, Otto-Hahn-Straße 13, 79395 Neuenburg am Rhein, Germany.
Losan Pharma GmbH, Otto-Hahn-Straße 13, 79395 Neuenburg am Rhein, Germany.
Int J Pharm. 2017 Sep 15;530(1-2):79-88. doi: 10.1016/j.ijpharm.2017.07.047. Epub 2017 Jul 18.
The development of nanosuspensions of poorly soluble APIs takes a lot of time and high amount of active material is needed. In this publication the use of dual centrifugation (DC) for an effective and rapid API-nanomilling is described for the first time. DC differs from normal centrifugation by an additional rotation of the samples during centrifugation, resulting in a very fast and powerful movement of the samples inside the vials, which - in combination with milling beads - result in effective milling. DC-nanomilling was compared to conventional wet ball milling and results in same or even smaller particle sizes. Also drug concentrations up to 40% can be processed. The process is fast (typical 90min) and the temperature can be controlled. DC-nanomilling appears to be very gentle, experiments showed no change of the crystal structure during milling. Since batch sizes are very small (100-1000mg) and since 40 sample vials can be processed in parallel, DC is ideal for the screening of suitable polymer/surfactant combinations. Fenofibrate was used to investigate DC-nanomilling for formulation screening by applying a DoE-approach. The presented data also show that the results of DC-nanomilling experiments are highly comparable to the results obtained by common agitator mills.
难溶性活性药物成分纳米混悬液的研发耗时久且需要大量活性物质。本出版物首次描述了使用双重离心(DC)进行高效快速的活性药物成分纳米研磨。DC与普通离心的不同之处在于,在离心过程中样品会额外旋转,这使得样品在小瓶内快速且剧烈地移动,再结合研磨珠,从而实现高效研磨。将DC纳米研磨与传统湿式球磨进行比较,结果显示其粒径相同甚至更小。此外,高达40%的药物浓度也可进行处理。该过程快速(通常90分钟)且温度可控。DC纳米研磨似乎非常温和,实验表明研磨过程中晶体结构没有变化。由于批次量非常小(100 - 1000毫克)且可同时处理40个样品小瓶,DC非常适合筛选合适的聚合物/表面活性剂组合。通过应用实验设计方法,使用非诺贝特研究DC纳米研磨用于制剂筛选。所呈现的数据还表明,DC纳米研磨实验的结果与普通搅拌磨获得的结果具有高度可比性。