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DNA在胶体银纳米颗粒上的吸附:纳米颗粒表面电荷、碱基含量及DNA长度的影响

Adsorption of DNA on colloidal Ag nanoparticles: effects of nanoparticle surface charge, base content and length of DNA.

作者信息

Abbasian Sara, Moshaii Ahmad, Nikkhah Maryam, Farkhari Nahid

机构信息

Department of Physics, Tarbiat Modares University, P.O. Box 14115-175, Tehran, Iran.

Department of Nanobiotechnology, Tarbiat Modares University, P.O. Box 14115-175, Tehran, Iran.

出版信息

Colloids Surf B Biointerfaces. 2014 Apr 1;116:439-45. doi: 10.1016/j.colsurfb.2014.01.023. Epub 2014 Jan 25.

Abstract

The adsorption of single and double stranded DNA on colloidal silver nanoparticles has been studied to investigate the effects of surface charge of the nanoparticles, the composition of the oligonucleotide and its length on the adsorption characteristics. The results explain that the nanoparticle surface charge is a key parameter determining the propensity of oligonucleotides to adsorb on nanoparticles. The adsorption also depends on the length and composition of oligonucleotide. The protective effects of both single and double stranded DNA against salt-induced aggregation dramatically increase as the DNA length increases. In contrast to other available reports, we observed that long oligonucleotides (single-stranded and double stranded) can well be adsorbed on the nanoparticles as the short ones leading to almost complete protection of nanoparticles against salt induced aggregation and hence are not suitable for the sensing applications. Finally, the light scattering from the Ag nanoparticles has been simulated and the results compared with the experiments. Our understanding should improve development of colorimetric assays for DNA detection based on aggregation of unmodified metallic nanoparticles.

摘要

为了研究纳米颗粒表面电荷、寡核苷酸组成及其长度对吸附特性的影响,对单链和双链DNA在胶体银纳米颗粒上的吸附进行了研究。结果表明,纳米颗粒表面电荷是决定寡核苷酸吸附在纳米颗粒上倾向的关键参数。吸附还取决于寡核苷酸的长度和组成。随着DNA长度的增加,单链和双链DNA对盐诱导聚集的保护作用显著增强。与其他现有报道不同的是,我们观察到长寡核苷酸(单链和双链)与短寡核苷酸一样能够很好地吸附在纳米颗粒上,从而几乎完全保护纳米颗粒免受盐诱导的聚集,因此不适用于传感应用。最后,对银纳米颗粒的光散射进行了模拟,并将结果与实验进行了比较。我们的认识应有助于改进基于未修饰金属纳米颗粒聚集的比色法DNA检测技术的发展。

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