Park In-Kyu, Singha Kaushik, Arote Rohidas B, Choi Yun-Jaie, Kim Won Jong, Cho Chong-Su
Department of Biomedical Sciences, Chonnam National University Medical School, Chonnam National University, Gwangju 501-746, Korea.
Macromol Rapid Commun. 2010 Jul 1;31(13):1122-33. doi: 10.1002/marc.200900867. Epub 2010 May 4.
Despite the immense potential of non-viral delivery system in gene therapy its application has been impaired greatly by various impediments having contrasting traits. Therefore it is an absolute necessity to develop some non-viral vectors which are endowed with special characteristics to act differently in intracellular as well as extracellular compartments to surmount these inter-conflicting hurdles. Such smart polymers should serve some specific purposes by adjusting their structural or functional traits under the influence of stimuli such as temperature, light, salt concentration or pH. Among all these stimuli-responsive polymers pH-responsive polymers have attracted major attention and great impetus has been directed towards utilizing the subtle yet significant change in pH value within the cellular compartments. This review is intended to provide a comprehensive account of the development of pH-responsive polymeric vectors based on their structural features and consequent functional attributes to achieve efficient transfection. The underlying modes of actions relating to structure and differential pH environment have also been discussed in this review.
尽管非病毒递送系统在基因治疗中具有巨大潜力,但其应用却因各种具有不同特性的障碍而受到极大阻碍。因此,开发一些具有特殊特性的非病毒载体绝对必要,这些载体在细胞内和细胞外区室中表现不同,以克服这些相互冲突的障碍。这种智能聚合物应通过在温度、光、盐浓度或pH等刺激影响下调整其结构或功能特性来实现一些特定目的。在所有这些刺激响应聚合物中,pH响应聚合物引起了主要关注,并且人们大力致力于利用细胞区室内pH值的细微但显著的变化。本综述旨在基于pH响应聚合物的结构特征及其相应的功能属性,全面阐述其在实现高效转染方面的发展情况。本综述还讨论了与结构和不同pH环境相关的潜在作用模式。