Yang Mingshi, Cui Fude, You Bengang, You Jian, Wang Liang, Zhang Liqiang, Kawashima Yoshiaki
Department of Pharmaceutics, School of Pharmaceutical Science, Shenyang Pharmaceutical University, No. 103, Wenhua Road, Shenyang 110016, China.
J Control Release. 2004 Aug 11;98(2):219-29. doi: 10.1016/j.jconrel.2004.04.022.
A novel pH-dependent gradient-release delivery system was developed by mixing three kinds of pH-dependent microspheres. Nitrendipine, a dihydropyridine calcium antagonist, was selected as the poorly water-soluble model drug. To obtain gradient-release of the active drug in the stomach, duodenum and lower segment of the small intestine, respectively, three kinds of pH-dependent polymers, i.e. Acrylic resins Eudragit E-100, Hydroxypropylmethylcellulose phthalate and Hydroxypropylmethylcellulose acetate succinate, were formulated to produce the microspheres, which dissolve at an acid condition, the pH of > or = 5.5 and > or = 6.5, respectively. The quasi-emulsion solvent diffusion method was employed in the manufacturing process for the microspheres. All three kinds of microspheres had a highly spherical shape and high incorporation efficiency (>91.0%). The particle sizes were mainly affected by the agitation speed and temperature of the manufacturing process. The results of X-ray diffraction suggested that nitrendipine in the microspheres was molecularly dispersed in an amorphous state. The drug dissolution behavior of the system under the simulated gastrointestinal pH conditions revealed obvious gradient-release characteristics. The dissolution profiles and content of the systems stored at a temperature of 40 degrees C and a relative humidity of 75% were unchanged during a 3-month period of accelerating storage conditions. The results of the bioavailability testing in six healthy dogs suggested that the pH-dependent gradient-release delivery system could improve efficiently the uptake of the poorly water-soluble drug and prolong the Tmax value in vivo.
通过混合三种pH依赖型微球,开发了一种新型的pH依赖型梯度释放给药系统。选择二氢吡啶类钙拮抗剂尼群地平作为难溶性模型药物。为了使活性药物分别在胃、十二指肠和小肠下段实现梯度释放,制备了三种pH依赖型聚合物,即丙烯酸树脂Eudragit E-100、邻苯二甲酸羟丙甲纤维素和醋酸琥珀酸羟丙甲纤维素,来制备微球,它们分别在酸性条件、pH≥5.5和pH≥6.5时溶解。微球的制备过程采用准乳液溶剂扩散法。所有三种微球均呈高度球形,包封率高(>91.0%)。粒径主要受制备过程中的搅拌速度和温度影响。X射线衍射结果表明,微球中的尼群地平以分子态分散于无定形状态。该系统在模拟胃肠道pH条件下的药物溶出行为呈现出明显的梯度释放特征。在40℃、相对湿度75%的加速储存条件下放置3个月,该系统的溶出曲线和含量均未发生变化。对6只健康犬进行的生物利用度试验结果表明,pH依赖型梯度释放给药系统能够有效提高难溶性药物的吸收,并延长其体内达峰时间(Tmax)。