Hong Tu, Shen Xinyuan, Syeda Madiha Zahra, Zhang Yang, Sheng Haonan, Zhou Yipeng, Xu JinMing, Zhu Chaojie, Li Hongjun, Gu Zhen, Tang Longguang
International institutes of Medicine, The Fourth Affiliated Hospital of Zhejiang University School of Medicine, Yiwu, 322000 China.
Key Laboratory of Advanced Drug Delivery Systems of Zhejiang Province, College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, 310058 China.
Nano Res. 2023;16(2):2660-2671. doi: 10.1007/s12274-022-5002-2. Epub 2022 Nov 15.
A bioresponsive polymeric nanocarrier for drug delivery is able to alter its physical and physicochemical properties in response to a variety of biological signals and pathological changes, and can exert its therapeutic efficacy within a confined space. These nanosystems can optimize the biodistribution and subcellular location of therapeutics by exploiting the differences in biochemical properties between tumors and normal tissues. Moreover, bioresponsive polymer-based nanosystems could be rationally designed as precision therapeutic platforms by optimizing the combination of responsive elements and therapeutic components according to the patient-specific disease type and stage. In this review, recent advances in smart bioresponsive polymeric nanosystems for cancer chemotherapy and immunotherapy will be summarized. We mainly discuss three categories, including acidity-sensitive, redox-responsive, and enzyme-triggered polymeric nanosystems. The important issues regarding clinical translation such as reproducibility, manufacture, and probable toxicity, are also commented.
一种用于药物递送的生物响应性聚合物纳米载体能够响应多种生物信号和病理变化改变其物理和物理化学性质,并能在受限空间内发挥其治疗功效。这些纳米系统可通过利用肿瘤与正常组织之间生化性质的差异来优化治疗药物的生物分布和亚细胞定位。此外,基于生物响应性聚合物的纳米系统可根据患者特定的疾病类型和阶段,通过优化响应元件与治疗成分的组合,合理设计为精准治疗平台。在本综述中,将总结用于癌症化疗和免疫治疗的智能生物响应性聚合物纳米系统的最新进展。我们主要讨论三类,包括酸敏性、氧化还原响应性和酶触发的聚合物纳米系统。还对有关临床转化的重要问题,如可重复性、制造和可能的毒性进行了评论。