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Effect of Geometric Structure of Flow Promoting Agents on the Flow Properties of Pharmaceutical Powder Mixture
Authors:Ohta  Kotoe Machida  Fuji  Masayoshi  Chikazawa  Masatoshi
Institution:(1) Department of Pharmaceutical Research, Nippon Boehringer Ingelheim Co., Ltd., 3-10-1 Yato, Kawanishi, Hyogo, Japan;(2) Ceramics Research Laboratory, Nagoya Institute of Technology, 10-6-29 Asahigaoka Tajimi, Gifu, Japan;(3) Department of Applied Chemistry, Graduate School of Engineering, Tokyo Metropolitan University, 1-1 Minami-ohsawa Hachioji, Tokyo, Japan
Abstract:Purpose. The object of this work was to investigate the mechanism of how the surface geometric structure of flow agents affects on the flowability of pharmaceutical powder mixtures. Methods. Nonporous and porous silicas were mixed with directly compressible fillers as flow promoting agents. The geometric structure of flow agents was investigated by gas adsorption and laser diffraction analysis. Flowability was evaluated with Carr's index measurement. Adhesion force between fillers and flow agents was determined using atomic force microscopy. Results. Flowability was improved with the addition of both nonporous and porous flow agents. In the case of nonporous flow agents, effect to promote flowability decreased with the increase of particle diameter, whereas porous flow agents highly improved flowability independent of particle diameter. Atomic force microscopy measurement found that the adhesion force between a porous agent and filler was smaller than that between a nonporous agent and filler. Conclusions. Enhancement of flowability varies depending on the geometric structure of flow agents. Porous flow agents improve flow properties more than nonporous agents, because porosity is highly contributed to reduction of adhesion force between particles.
Keywords:flowability  flow agent  geometric structure  adhesion force  atomic force microscope
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