Shielding and stealth effects of zwitterion moieties in double-functionalized silica nanoparticles

被引:22
|
作者
Loiola, Livia M. D. [1 ]
Batista, Marina [1 ]
Capeletti, Larissa B. [1 ,2 ]
Mondo, Gabriela B. [1 ,2 ]
Rosa, Rhubia S. M. [3 ]
Marques, Rafael E. [3 ]
Bajgelman, Marcio C. [3 ]
Cardoso, Mateus B. [1 ,2 ]
机构
[1] Brazilian Ctr Res Energy & Mat CNPEM, Brazilian Nanotechnol Natl Lab LNNano, BR-13083970 Campinas, SP, Brazil
[2] Univ Estadual Campinas, UNICAMP, Inst Chem, POB 6154, BR-13083970 Campinas, SP, Brazil
[3] Brazilian Ctr Res Energy & Mat CNPEM, Brazilian Biosci Natl Lab LNBio, BR-13083970 Campinas, SP, Brazil
基金
巴西圣保罗研究基金会;
关键词
Silica nanoparticles; Double-functionalization; Zwitterion; Mammalian cell; Bacterium; Zika virus; Shielding effect; SURFACE FUNCTIONALIZATION; PROTEIN ADSORPTION; SIZE; VIRUS; CHEMISTRY; DELIVERY; CELLS; AMINO; ASSAY; SHAPE;
D O I
10.1016/j.jcis.2019.06.044
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Surface functionalization of silica nanoparticles (SiO(2)NPs) has been considered as a promising strategy to develop target-specific nanostructures. However, finding a chemical functionalization that can be used as an active targeting moiety while preserving the nanoparticles colloidal stability in biological fluids is still challenging. We present here a dual surface modification strategy for SiO(2)NPs where a zwitterion (ZW) and a biologically active group (BAG) (amino, mercapto or carboxylic functionalities) are simultaneously grafted on the nanoparticles' surface. The rationale behind this strategy is to generate colloidally stable nanoparticles and avoid the nonspecific protein adsorption due to ZW groups insertion, while the effective interaction with biosystems is guaranteed by the BAGs presence. The biological efficacy was tested against VERO cells, E. coli bacteria and Zika viruses and a similar trend was observed for all tested particles. The desirable "stealth property" to prevent nonspecific protein adhesion also generated a ZW shielding effect of the BAG functionality hindering their proper interaction and activity in cells, bacteria and viruses. (C) 2019 Elsevier Inc. All rights reserved.
引用
收藏
页码:540 / 548
页数:9
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