| Literature DB >> 25757643 |
Wenqiang Ba1, Zhou Li1, Lisheng Wang1, Ding Wang1, Weiguo Liao1, Wentao Fan1, Yinai Wu1, Fengyun Liao1, Jianye Yu1.
Abstract
The purpose of the present study was to prepare and optimize sinomenine (SIN) pluronic lecithin organogels system (PLO), and to evaluate the permeability of the optimized PLO in vitro and in vivo. Box-Behnken design was used to optimize the PLO and the optimized formulation was pluronic F127 of 19.61%, lecithin of 3.60% and SIN of 1.27%. The formulation was evaluated its skin permeation and drug deposition both in vitro and in vivo compared with gel. Permeation and deposition studies of PLO were carried out with Franz diffusion cells in vitro and with microdialysis in vivo. In vitro studies, permeation rate (Jss) of SIN from PLO was 146.55 ± 2.93 μg/cm(2)/h, significantly higher than that of gel (120.39 μg/cm(2)/h) and the amount of SIN deposited in skin from the PLO was 10.08 ± 0.86 μg/cm(2), significantly larger than that from gel (6.01 ± 0.04 μg/cm(2)). In vivo skin microdialysis studies showed that the maximum concentration (Cmax) of SIN from PLO in "permeation study" and "drug-deposition study" were 150.27 ± 20.85 μg/ml and 67.95 μg/ml, respectively, both significantly higher than that of SIN from gel (29.66 and 6.73 μg/ml). The results recommend that PLO can be used as an advantageous transdermal delivery vehicle to enhance the permeation and skin deposition of SIN.Entities:
Keywords: Box–Behnken design; microdialysis; percutaneous permeation; pluronic lecithin organogels; sinomenine
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Year: 2015 PMID: 25757643 DOI: 10.3109/10837450.2015.1022791
Source DB: PubMed Journal: Pharm Dev Technol ISSN: 1083-7450 Impact factor: 3.133