Santoro Marco, Tatara Alexander M, Mikos Antonios G
Department of Chemical and Biomolecular Engineering, Rice University, Houston, TX 77005, USA.
Department of Bioengineering, Rice University, Houston, TX 77030, USA.
J Control Release. 2014 Sep 28;190:210-8. doi: 10.1016/j.jconrel.2014.04.014. Epub 2014 Apr 16.
The ability of gelatin to form complexes with different drugs has been investigated for controlled release applications. Gelatin parameters, such as crosslinking density and isoelectric point, have been tuned in order to optimize gelatin degradation and drug delivery kinetics. In recent years, focus has shifted away from the use of gelatin in isolation toward the modification of gelatin with functional groups and the fabrication of material composites with embedded gelatin carriers. In this review, we highlight some of the latest work being performed in these areas and comment on trends in the field. Specifically, we discuss gelatin modifications for immune system evasion, drug stabilization, and targeted delivery, as well as gelatin composite systems based on ceramics, naturally-occurring polymers, and synthetic polymers.
明胶与不同药物形成复合物的能力已被研究用于控释应用。为了优化明胶降解和药物释放动力学,已对明胶参数(如交联密度和等电点)进行了调整。近年来,研究重点已从单独使用明胶转向用官能团修饰明胶以及制备含有明胶载体的材料复合材料。在本综述中,我们重点介绍了这些领域中正在进行的一些最新研究工作,并对该领域的趋势进行了评论。具体而言,我们讨论了用于逃避免疫系统、药物稳定化和靶向递送的明胶修饰,以及基于陶瓷、天然聚合物和合成聚合物的明胶复合系统。