Heath Felicity, Haria Prinal, Alexander Cameron
School of Pharmacy, Boots Science Building, University of Nottingham, University Park, Nottingham NG7 2RD, UK.
AAPS J. 2007 Jun 22;9(2):E235-40. doi: 10.1208/aapsj0902026.
Variable architecture polymers are of considerable interest for the delivery of therapeutic biopolymers, such as DNA and proteins, to their site of action. Polymers that can respond with a change in conformation to biologically relevant stimuli, such as temperature and pH, are being carefully designed to take advantage of the change in environmental conditions the polymer-drug conjugate encounters upon progression from larger-scale systems in the body to subcellular compartments. Viruses respond to changes in the cellular environment to gain access to their desired region of cells, and much can be learned from the mechanisms they employ in this effort. However, despite the efficiency of therapeutic biopolymers, undesirable immune and inflammatory responses may result from their repeated administration, so synthetic polymers are an attractive alternative. This mini-review examines a range of recently developed variable architecture polymers, mainly focusing on polymers responsive to temperature and pH, covering both synthetic copolymers and derivatives of naturally occurring polymers for advanced drug delivery applications. The polymers discussed in the article have some of the properties that are most important for polymer drug delivery vehicles to be effective, such as biodegradability, specificity, and biocompatibility.
可变结构聚合物对于将治疗性生物聚合物(如DNA和蛋白质)递送至其作用部位具有相当大的吸引力。能够对生物相关刺激(如温度和pH值)作出构象变化响应的聚合物正在被精心设计,以利用聚合物-药物偶联物从体内较大规模系统进入亚细胞区室时所遇到的环境条件变化。病毒会对细胞环境的变化作出反应,以进入它们期望的细胞区域,并且可以从它们在这一过程中所采用的机制中学到很多东西。然而,尽管治疗性生物聚合物效率高,但重复给药可能会导致不良的免疫和炎症反应,因此合成聚合物是一种有吸引力的替代选择。本综述探讨了一系列最近开发的可变结构聚合物,主要关注对温度和pH值有响应的聚合物,涵盖合成共聚物和天然聚合物的衍生物,用于先进的药物递送应用。文章中讨论的聚合物具有一些对于聚合物药物递送载体有效至关重要的特性,如生物可降解性、特异性和生物相容性。