Colloidal Virus Particles with Hierarchical Nanomorphology and Facile Biosurface Modification

等电点 化学 胶体 纳米颗粒 形态学(生物学) 粒子(生态学) 纳米技术 化学工程 病毒 粒径 表面电荷 生物物理学 材料科学 生物化学 病毒学 地质学 工程类 物理化学 海洋学 生物 遗传学
作者
Hailan Zhong,Hao Wu,Shuoran Chen,Liwei Cao,Changqing Ye,Fan Xia,Fengyu Li
出处
期刊:Chinese Journal of Chemistry [Wiley]
卷期号:40 (8): 946-952
标识
DOI:10.1002/cjoc.202100698
摘要

Comprehensive Summary Aiming to the enormous requirement for the epidemic defense researches, we designed and constructed a spherical colloidal virus particle (CVP) to mimic nature virus in morphology, physical, chemical and biological characteristics, via coating spiky protein on colloidal nanoparticles (CNPs) core with bulge hierarchical nanomorphology. The novel virus‐like surface nanoparticles can easily be synthesized. The physical, chemical nature and the formation mechanism of the prepared CVPs were characterized and discussed. The synthesized CVPs are similar in size and envelope thickness to common natural viruses. It was demonstrated that the diameter of CVPs is about 238 ± 12 nm, including an 8 nm thickness protein crown with bulges of 33 nm in average width. The CVPs with an isoelectric point of 4.5, meets the native virus property of negative charge under neutral condition. The protein crown enhances the roughness remarkably from 10 nm (CNPs) to 22 nm (CVPs) determined by atomic force microscopy. Thanks to the biomimetic rough morphology, the CVPs show greatly superior cellular uptake performance compared to CNPs, ovalbumin (OVA) and smoothed colloidal particles (SCPs). The formation mechanism of protein crown with specific thickness can be attributed to the electrostatic interaction, protein's flexible structure and specific wettability. These results indicate that the as‐prepared artificial virions mimic nature viruses in multi‐dimension, in terms of size, surface rough morphology, surface negative charge and glycoprotein envelope composition. The synthetic colloidal virus particles pave a facile way toward engineering virus particles substitute for virus‐related diseases prevention, diagnostics and cellular delivery vectors.
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