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Merck
CN

Virus-mimetic nanovesicles as a versatile antigen-delivery system.

Proceedings of the National Academy of Sciences of the United States of America (2015-10-28)
Pengfei Zhang, Yixin Chen, Yun Zeng, Chenguang Shen, Rui Li, Zhide Guo, Shaowei Li, Qingbing Zheng, Chengchao Chu, Zhantong Wang, Zizheng Zheng, Rui Tian, Shengxiang Ge, Xianzhong Zhang, Ning-Shao Xia, Gang Liu, Xiaoyuan Chen
摘要

It is a critically important challenge to rapidly design effective vaccines to reduce the morbidity and mortality of unexpected pandemics. Inspired from the way that most enveloped viruses hijack a host cell membrane and subsequently release by a budding process that requires cell membrane scission, we genetically engineered viral antigen to harbor into cell membrane, then form uniform spherical virus-mimetic nanovesicles (VMVs) that resemble natural virus in size, shape, and specific immunogenicity with the help of surfactants. Incubation of major cell membrane vesicles with surfactants generates a large amount of nano-sized uniform VMVs displaying the native conformational epitopes. With the diverse display of epitopes and viral envelope glycoproteins that can be functionally anchored onto VMVs, we demonstrate VMVs to be straightforward, robust and tunable nanobiotechnology platforms for fabricating antigen delivery systems against a wide range of enveloped viruses.

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Sigma-Aldrich
DAPI, for nucleic acid staining
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脱氧胆酸钠, BioXtra, ≥98.0% (dry matter, NT)
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脱氧胆酸钠, ≥97% (titration)
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氢氧化铝, reagent grade
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3,3′,5,5′-四甲基联苯胺, ≥99%
SAFC
脱氧胆酸钠
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3,3′,5,5′-四甲基联苯胺, ≥98% (TLC)
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3,3′,5,5′-四甲基联苯胺, ≥98.0% (NT)
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3,3′,5,5′-四甲基联苯胺, tablet, 1 mg substrate per tablet
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二喹啉甲酸 二钠盐 水合物, ≥98% (HPLC)
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二喹啉甲酸 二钠盐 水合物, Vetec, reagent grade, 98%
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脱氧胆酸钠, Vetec, reagent grade, ≥97%