College of Chemistry, Chemical Engineering and Biotechnology, Donghua University, Shanghai 201620, PR China.
Int J Pharm. 2012 Oct 15;436(1-2):88-96. doi: 10.1016/j.ijpharm.2012.06.058. Epub 2012 Jul 9.
A drug-loaded nanofiber mesh which could achieve time-engineeringed biphasic release was fabricated through sequential electrospinning. The drug to polymer ratio of each single mesh was allocated and designed before the tri-layered meshes were created. The resultant meshes had the following construction: (i) the first drug-loaded mesh (top side), (ii) the second drug-loaded mesh (second side), and (iii) the third drug-loaded mesh (bottom side). The drug release speed and duration were controlled by designing morphological features of the electrospun meshes such as the fiber diameter and mesh thickness. An in vitro release experiment revealed that the tri-layered construction with distinct morphological features of each component mesh can provide biphasic drug release. The time-engineeringed dual release system using the multilayered electrospun nanofiber meshes was proved to be a useful formulation when achieving controlled drug release at different times.
通过顺序静电纺丝技术制备了一种载药纳米纤维网,该纤维网可以实现时间工程双相释放。在制备三层纤维网之前,分配和设计了每个单纤维网的药物与聚合物的比例。所得纤维网具有以下结构:(i)第一层载药纤维网(上侧),(ii)第二层载药纤维网(第二侧)和(iii)第三层载药纤维网(下侧)。通过设计电纺纤维网的形态特征(如纤维直径和纤维网厚度)来控制药物释放速度和持续时间。体外释放实验表明,具有各组件纤维网独特形态特征的三层结构可以提供双相药物释放。事实证明,使用多层电纺纳米纤维网的时间工程双释放系统在不同时间实现控制药物释放时是一种有用的配方。