Echeverri Juan D, Alhajj Maria J, Montero Nicolle, Yarce Cristhian J, Barrera-Ocampo Alvaro, Salamanca Constain H
Programa de Maestría en Formulación de Productos Químicos y Derivados, Facultad de Ciencias Naturales, Universidad Icesi, Calle 18 No. 122-135, Cali 76003, Colombia.
Laboratorio de Diseño y Formulación de Productos Químicos y Derivados, Facultad de Ciencias Naturales. Universidad Icesi, Calle 18 No. 122-135, Cali 76003, Colombia.
Pharmaceuticals (Basel). 2020 Mar 26;13(4):53. doi: 10.3390/ph13040053.
In the past decade, pharmaceutical nanotechnology has proven to be a promising alternative for improving the physicochemical and biopharmaceutical features for conventional pharmaceutical drug formulations. The goal of this study was to develop, characterize, and evaluate the in vitro and in vivo release of the model drug carbamazepine (CBZ) from two emulsified formulations with different droplet sizes (coarse and nanometric). Briefly, oil-in-water emulsions were developed using (i) Sacha inchi oil, ultrapure water, Tween 80, and Span 80 as surfactants, (ii) methyl-paraben and propyl-paraben as preservatives, and (iii) CBZ as a nonpolar model drug. The coarse and nanometric emulsions were prepared by rotor-stator dispersion and ultra-high-pressure homogenization (UHPH), respectively. The in vitro drug release studies were conducted by dialysis, whereas the in vivo drug release was evaluated in New Zealand breed rabbits. The results showed that nanoemulsions were physically more stable than coarse emulsions, and that CBZ had a very low release for in vitro determination (<2%), and a release of 20% in the in vivo study. However, it was found that nanoemulsions could significantly increase drug absorption time from 12 h to 45 min.
在过去十年中,药物纳米技术已被证明是改善传统药物制剂物理化学和生物药剂学特性的一种有前景的替代方法。本研究的目的是开发、表征和评估模型药物卡马西平(CBZ)从两种不同液滴尺寸(粗乳液和纳米乳液)的乳化制剂中的体外和体内释放情况。简要来说,水包油乳液的制备使用了(i)印加果油、超纯水、吐温80和司盘80作为表面活性剂,(ii)对羟基苯甲酸甲酯和对羟基苯甲酸丙酯作为防腐剂,以及(iii)CBZ作为非极性模型药物。粗乳液和纳米乳液分别通过转子-定子分散和超高压均质化(UHPH)制备。体外药物释放研究通过透析进行,而体内药物释放则在新西兰兔中进行评估。结果表明,纳米乳液在物理上比粗乳液更稳定,并且CBZ在体外测定中的释放非常低(<2%),在体内研究中的释放为20%。然而,发现纳米乳液可将药物吸收时间从12小时显著增加到45分钟。