Qureshi J, Amir Mohd, Ahuja Alka, Baboota Sanjula, Ali J
Department of Pharmaceutics, Faculty of Pharmacy, Jamia Hamdard, (Hamdard University), New Delhi-110 062, India.
Indian J Pharm Sci. 2008 May-Jun;70(3):351-6. doi: 10.4103/0250-474X.43000.
A time dependent pulsed release system consisting of an effervescent core surrounded by consecutive layers of swelling and rupturable polymers was prepared and evaluated. The cores containing salbutamol sulphate as bioactive agent were prepared by direct compression method using different ratios of microcrystalline cellulose and effervescent agent and then coated sequentially with an inner swelling layer containing a hydrocolloid, hydroxypropylmethylcellulose E5 and an outer rupturable layer having Eudragit RL/RS (1:1). The effects of various processing and formulative parameters on the performance of system were studied. The rupture and dissolution tests were studied using the USP paddle method at 50 rpm in 0.1 N HCl and phosphate buffer pH 6.8. The lag time of the drug release decreased by increasing the inner swelling layer and increased by increasing the rupturing layer level. All the results obtained in the present study suggest that osmotic pumping effect was involved which eventually lead to the drug release.
制备并评估了一种随时间变化的脉冲释放系统,该系统由泡腾片芯以及围绕其的连续的溶胀和可破裂聚合物层组成。含有硫酸沙丁胺醇作为生物活性剂的片芯通过直接压片法制备,使用不同比例的微晶纤维素和泡腾剂,然后依次用含有水胶体、羟丙基甲基纤维素E5的内溶胀层和具有Eudragit RL/RS(1:1)的外可破裂层进行包衣。研究了各种工艺和配方参数对系统性能的影响。使用美国药典桨法在50 rpm转速下于0.1 N盐酸和pH 6.8的磷酸盐缓冲液中进行破裂和溶出试验。药物释放的滞后时间通过增加内溶胀层而缩短,通过增加破裂层水平而延长。本研究获得的所有结果表明涉及渗透泵效应,最终导致药物释放。