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Polymer-virus core-shell structures prepared via co-assembly and template synthesis methods 被引量:1

Polymer-virus core-shell structures prepared via co-assembly and template synthesis methods
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摘要 Bionanoparticles(BNPs),consisting of virus and virus-like assemblies,have attracted much attention in the biomedical field for their applications such as imaging and targeted drug delivery,owing to their well-defined structures and well-controlled chemistries.BNPs-based core-shell structures provide a unique system for the investigation of biological interactions such as protein-protein and protein-carbohydrate interactions.However,it is still a challenge to prepare the BNPs-based core-shell structures.Herein,we describe(i) co-assembly method and(ii) template synthesis method in the development of polymer-BNPs core-shell structures.These two methods can be divided into three different systems.In system A,different polymers including poly(2-vinylpyridine)(P2VP),poly(4-vinylpyridine)(P4VP) and poly(ε-caprolactone)-block-poly(2-vinylpyridine)(PCL-b-P2VP) can form a raspberry-like structure with BNPs.In system B,polystyrene(PS) spheres end capped with free amine and BNPs can form a core-shell structure.In System C,layer-by-layer(LBL) method is used to prepare positive charged PS particles,which can be used as a template to form the core-shell structures with BNPs.These two methods may open a new way for preparing novel protein-based functional materials for potential applications in the biomedical field. Bionanoparticles(BNPs),consisting of virus and virus-like assemblies,have attracted much attention in the biomedical field for their applications such as imaging and targeted drug delivery,owing to their well-defined structures and well-controlled chemistries.BNPs-based core-shell structures provide a unique system for the investigation of biological interactions such as protein-protein and protein-carbohydrate interactions.However,it is still a challenge to prepare the BNPs-based core-shell structures.Herein,we describe(i) co-assembly method and(ii) template synthesis method in the development of polymer-BNPs core-shell structures.These two methods can be divided into three different systems.In system A,different polymers including poly(2-vinylpyridine)(P2VP),poly(4-vinylpyridine)(P4VP) and poly(ε-caprolactone)-block-poly(2-vinylpyridine)(PCL-b-P2VP) can form a raspberry-like structure with BNPs.In system B,polystyrene(PS) spheres end capped with free amine and BNPs can form a core-shell structure.In System C,layer-by-layer(LBL) method is used to prepare positive charged PS particles,which can be used as a template to form the core-shell structures with BNPs.These two methods may open a new way for preparing novel protein-based functional materials for potential applications in the biomedical field.
出处 《Science China Chemistry》 SCIE EI CAS 2010年第1期71-77,共7页 中国科学(化学英文版)
基金 support from the US NSF CAREER program,US DoD (W911NF-09-1-0236),the Alfred P. Sloan Scholarship, the Camille Dreyfus Teacher Scholar Award, DoD-BCRP,and the W.M.Keck Foundation
关键词 CORE-SHELL structures bionanoparticles VIRUS polymers co-assembly TEMPLATE synthesis layer-by-layer core-shell structures bionanoparticles virus polymers co-assembly template synthesis layer-by-layer
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  • 1Wei-Hai Chen,Qi-Wen Chen,Qian Chen,Chunyan Cui,Shun Duan,Yongyuan Kang,Yang Liu,Yun Liu,Wali Muhammad,Shiqun Shao,Chengqiang Tang,Jinqiang Wang,Lei Wang,Meng-Hua Xiong,Lichen Yin,Kuo Zhang,Zhanzhan Zhang,Xu Zhen,Jun Feng,Changyou Gao,Zhen Gu,Chaoliang He,Jian Ji,Xiqun Jiang,Wenguang Liu,Zhuang Liu,Huisheng Peng,Youqing Shen,Linqi Shi,Xuemei Sun,Hao Wang,Jun Wang,Haihua Xiao,Fu-Jian Xu,Zhiyuan Zhong,Xian-Zheng Zhang,Xuesi Chen.Biomedical polymers: synthesis, properties, and applications[J].Science China Chemistry,2022,65(6):1010-1075. 被引量:6

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