Photoallosteric Polymersomes toward On‐Demand Drug Delivery and Multimodal Cancer Immunotherapy

Author:

Zheng Yi1,Liu Yang1,Wu Zhongchao1,Peng Chuan1,Wang Zuojie1,Yan Jingyue1,Yan Yue1,Li Zifen1,Liu Congcong1,Xue Jianxin2,Tan Hong1,Fu Qiang1,Ding Mingming1ORCID

Affiliation:

1. College of Polymer Science and Engineering State Key Laboratory of Polymer Materials Engineering Sichuan University Chengdu 610065 China

2. Department of Thoracic Oncology Cancer Center and State Key Laboratory of Biotherapy West China Hospital Sichuan University Chengdu 610065 China

Abstract

AbstractAllosteric transitions can modulate the self‐assembly and biological function of proteins. It remains, however, tremendously challenging to design synthetic allosteric polymeric assemblies with spatiotemporally switchable hierarchical structures and functionalities. Here, a photoallosteric polymersome is constructed that undergoes a rapid conformational transition from β‐sheet to α‐helix upon exposure to near‐infrared light irradiation. In addition to improving nanoparticle cell penetration and lysosome escape, photoinduced allosteric behavior reconstructs the vesicular membrane structure, which stimulates the release of hydrophilic cytolytic peptide melittin and hydrophobic kinase inhibitor sorafenib. Combining on‐demand delivery of multiple therapeutics with phototherapy results in apoptosis and immunogenic death of tumor cells, remold the immune microenvironment and achieve an excellent synergistic anticancer efficacy in vivo without tumor recurrence and metastasis. Such a light‐modulated allosteric transition in non‐photosensitive polymers provides new insight into the development of smart nanomaterials for biosensing and drug delivery applications.

Funder

National Natural Science Foundation of China

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

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