Qiu Y, Chidambaram N, Flood K
Formulation Development Centre, Pharmaceutical and Analytical R and D, Abbott Laboratories, North Chicago, IL 60064, USA.
J Control Release. 1998 Feb 12;51(2-3):123-30. doi: 10.1016/s0168-3659(97)00119-3.
New layered matrix systems designed for zero-order sustained release are presented. The devices consist of a hydrophobic middle layer and press-coated hydrophillic and/or hydrophobic barrier layer(s). The systems overcome the inherent disadvantage of non-linear release associated with diffusion-controlled matrix devices by providing additional releasing surface with time to compensate for the decreasing release rate. The in vitro release of pseudoephedrine hydrochloride as a model compound from the matrices was examined. Modulation of release from a selected matrix containing aminophylline was evaluated in a crossover study using nine beagle dogs. Preliminary in vitro/in vivo correlation was also studied. The systems described in this paper can potentially be scaled up to commercial production.
本文介绍了一种为实现零级持续释放而设计的新型层状基质系统。该装置由一个疏水中间层以及压制包衣的亲水和/或疏水屏障层组成。这些系统通过随着时间推移提供额外的释放表面来弥补释放速率的降低,从而克服了与扩散控制型基质装置相关的非线性释放这一固有缺点。对作为模型化合物的盐酸伪麻黄碱从基质中的体外释放进行了研究。在一项使用9只比格犬的交叉研究中,评估了从含有氨茶碱的选定基质中释放的调节情况。还研究了初步的体外/体内相关性。本文所述的系统有可能扩大到商业化生产。