Suarato Giulia, Li Weiyi, Meng Yizhi
Department of Materials Science and Engineering, Stony Brook University, Stony Brook, New York 11794.
Biointerphases. 2016 Dec 25;11(4):04B201. doi: 10.1116/1.4944661.
There is a continuous demand for sensitive and efficient cancer drug delivery systems that, when administered at low concentrations, are capable of detecting early-stage pathological conditions and increasing patient survival without adverse side effects. Recent developments in the design of chitosan-based smart drug delivery nanocomplexes are able to respond to the distinctive features of the tumor microenvironment and have provided powerful tools for cancer targeted treatment. Due to its biocompatibility and pH-responsiveness, chitosan has emerged as a promising candidate for the formulation of novel, supramolecular multifunctional materials. This review will first present an overview of the characteristics of solid tumors and their microenvironment, with a particular emphasis on the role of pH as a key factor. In the second part of the review, the stimuli-responsive potential of chitosan-based micelles, current challenges in delivery, and strategies to improve therapeutic efficacy will be discussed.
人们一直对灵敏且高效的癌症药物递送系统有着持续的需求,这类系统在低浓度给药时,能够检测早期病理状况并提高患者生存率,且无不良副作用。基于壳聚糖的智能药物递送纳米复合物设计的最新进展能够响应肿瘤微环境的独特特征,并为癌症靶向治疗提供了强大工具。由于其生物相容性和pH响应性,壳聚糖已成为新型超分子多功能材料配方的有前途的候选者。本综述将首先概述实体瘤及其微环境的特征,特别强调pH作为关键因素的作用。在综述的第二部分,将讨论基于壳聚糖的胶束的刺激响应潜力、当前递送方面的挑战以及提高治疗效果的策略。