High drug loading self-microemulsifying/micelle formulation: design by high-throughput formulation screening system andin vivoevaluation

溶解度 胶束 色谱法 吸收(声学) 生物利用度 乳状液 化学 溶剂 材料科学 水溶液 有机化学 复合材料 药理学 医学
作者
Kenichi Sakai,Kouki Obata,Mayumi Yoshikawa,Ryusuke Takano,Masaki Shibata,Hiroyuki Maeda,A. Mizutani,Katsuhide Terada
出处
期刊:Drug Development and Industrial Pharmacy [Taylor & Francis]
卷期号:38 (10): 1254-1261 被引量:7
标识
DOI:10.3109/03639045.2011.645832
摘要

Purpose: To design a high drug loading formulation of self-microemulsifying/micelle system.Methods: A poorly-soluble model drug (CH5137291), 8 hydrophilic surfactants (HS), 10 lipophilic surfactants (LS), 5 oils, and PEG400 were used. A high loading formulation was designed by a following stepwise approach using a high-throughput formulation screening (HTFS) system: (1) an oil/solvent was selected by solubility of the drug; (2) a suitable HS for highly loading was selected by the screenings of emulsion/micelle size and phase stability in binary systems (HS, oil/solvent) with increasing loading levels; (3) a LS that formed a broad SMEDDS/micelle area on a phase diagram containing the HS and oil/solvent was selected by the same screenings; (4) an optimized formulation was selected by evaluating the loading capacity of the crystalline drug. Aqueous solubility behavior and oral absorption (Beagle dog) of the optimized formulation were compared with conventional formulations (jet-milled, PEG400).Results: As an optimized formulation, d-α-tocopheryl polyoxyethylene 1000 succinic ester: PEG400 = 8:2 was selected, and achieved the target loading level (200 mg/mL). The formulation formed fine emulsion/micelle (49.1 nm), and generated and maintained a supersaturated state at a higher level compared with the conventional formulations. In the oral absorption test, the area under the plasma concentration-time curve of the optimized formulation was 16.5-fold higher than that of the jet-milled formulation.Conclusions: The high loading formulation designed by the stepwise approach using the HTFS system improved the oral absorption of the poorly-soluble model drug.
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