Faculty of Pharmacy, Department of Pharmaceutics, Hamdard University, New Delhi-110062, India.
J Microencapsul. 2011;28(6):472-82. doi: 10.3109/02652048.2011.580861. Epub 2011 May 12.
Microparticles containing isoniazid were prepared by the emulsification internal ionic gelation method using a novel, alkaline extracted ispaghula husk as a wall forming material. A four-factor three-level Box-Behnken design was employed to study the effect of independent variables on dependent variables. Sodium alginate concentration (X(1)), alkaline extraction of ispaghula husk (AEISP) concentration (X(2)), concentration of cross-linking agents (X(3)) and stirring speed (X(4)) were four independent variables considered in the preparation of microparticles, while the particle size (Y(1)) and entrapment efficiency (Y(2)) were dependent variables. Optimized microparticles exhibited 83.43% drug entrapment and 51.53 µm particle size with 97.80% and 96.37% validity, respectively, at the following conditions - sodium alginate (3.55% w/v), alkaline extracted ispaghula husk (3.60% w/v), cross-linker concentration (7.82% w/v) and stirring speed (1200 rpm). The optimized formulation showed controlled drug release for more than 12 h by following Higuchi kinetics via non-Fickian diffusion. The gamma scintigraphy of the optimized formulation in Wistar rats showed that microparticles could be observed in the intestinal lumen after 1 h and were detectable in the intestine up to 12 h, with decreased percentage of radioactivity (t(1/2) of (99m)Tc 4-5 h).
采用乳化-离子凝胶法,以新型碱性提取的芦丁为壁材,制备载异烟肼的微粒。采用四因素三水平 Box-Behnken 设计研究各独立变量对因变量的影响。在微粒制备中,考察了海藻酸钠浓度(X1)、芦丁的碱性提取(AEISP)浓度(X2)、交联剂浓度(X3)和搅拌速度(X4)四个独立变量对微粒粒径(Y1)和包封率(Y2)的影响。优化后的微粒载药率为 83.43%,粒径为 51.53 μm,分别在以下条件下达到 97.80%和 96.37%的有效性:海藻酸钠(3.55%w/v)、碱性提取的芦丁(3.60%w/v)、交联剂浓度(7.82%w/v)和搅拌速度(1200 rpm)。优化后的制剂通过非 Fickian 扩散遵循 Higuchi 动力学,显示出超过 12 小时的控释药物释放。优化制剂在 Wistar 大鼠体内的伽马闪烁显像显示,微粒在 1 小时后可在肠腔中观察到,并在肠道中可检测到 12 小时,放射性百分比降低(99mTc 的 t1/2 为 4-5 小时)。