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. [Figure not available: see fulltext.]
CITATION STYLE
Hong, T., Shen, X., Syeda, M. Z., Zhang, Y., Sheng, H., Zhou, Y., … Tang, L. (2023, February 1). Recent advances of bioresponsive polymeric nanomedicine for cancer therapy. Nano Research. Tsinghua University. https://doi.org/10.1007/s12274-022-5002-2
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