Surface Passivation Improves the Synthesis of Highly Stable and Specific DNA-Functionalized Gold Nanoparticles with Variable DNA Density

被引:33
作者
Deka, Jashmini [1 ]
Mech, Rostislav [2 ]
Ianeselli, Luca [1 ]
Amenitsch, Heinz [3 ]
Cacho-Nerin, Fernando [3 ,4 ]
Parisse, Pietro [5 ]
Casalis, Loredana [1 ,5 ]
机构
[1] Elettra Sincrotrone Trieste, I-34149 Trieste, Italy
[2] Brno Univ Technol, Brno 61669, Czech Republic
[3] Graz Univ Technol, Inst Inorgan Chem, A-8010 Graz, Austria
[4] Diamond Light Source Ltd, Didcot OX11 0DE, Oxon, England
[5] INSTM ST Unit, I-34149 Trieste, Italy
关键词
DNA functionalization; gold nanoparticles; surface passivation; oligo ethylene glycol; salt-stability; specificity; variable DNA density; BIOLOGY; SALT; PH; POLYNUCLEOTIDES; NANOTECHNOLOGY; STABILIZATION; STABILITY; KINETICS; BEHAVIOR; PROBES;
D O I
10.1021/acsami.5b01191
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We report a novel and multifaceted approach for the quick synthesis of highly stable single-stranded DNA (ssDNA) functionalized gold nanoparticles (AuNPs). The method is based on the combined effect of surface passivation by (1-mercaptoundec-11-yl)hexa(ethylene glycol) and low pH conditions, does not require any salt pretreatment or high excess of ssDNA, and can be generalized for oligonucleotides of any length or base sequence. The synthesized ssDNA-coated AuNPs conjugates are stable at salt concentrations as high as 3.0 M, and also functional and specific toward DNA-DNA hybridization, as shown from UV-vis spectrophotometry, scanning electron microscopy, gel electrophoresis, fluorescence, and small angle X-ray scattering based analyses. The method is highly flexible and shows an additional advantage of creating ssDNA-AuNP conjugates with a predefined number of ssDNA strands per particle. Its simplicity and tenability make it widely applicable to diverse biosensing applications involving ssDNA functionalized AuNPs.
引用
收藏
页码:7033 / 7040
页数:8
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