Capehart Stacy L, ElSohly Adel M, Obermeyer Allie C, Francis Matthew B
Department of Chemistry, University of California, Berkeley , Berkeley, California 94720, United States.
Bioconjug Chem. 2014 Oct 15;25(10):1888-92. doi: 10.1021/bc5003746. Epub 2014 Oct 2.
While there are a number of methods for attaching gold nanoparticles (AuNPs) to biomolecules, the existing strategies suffer from nonspecific AuNP adsorption, reagents that are unstable in aqueous solutions, and/or long reaction times. To improve upon existing AuNP bioconjugation strategies, we have adapted a recently reported potassium ferricyanide-mediated oxidative coupling reaction for the attachment of aniline-functionalized AuNPs to o-aminophenol-containing oligonucleotides, peptides, and proteins. The aniline-AuNPs are stable in aqueous solutions, show little-to-no nonspecific adsorption with biomolecules, and react rapidly (30 min) with o-aminophenols under mild conditions (pH 6.5, 1 mM oxidant).
虽然有多种将金纳米颗粒(AuNPs)附着到生物分子上的方法,但现有的策略存在非特异性AuNP吸附、在水溶液中不稳定的试剂和/或反应时间长等问题。为了改进现有的AuNP生物共轭策略,我们采用了最近报道的铁氰化钾介导的氧化偶联反应,将苯胺功能化的AuNPs附着到含邻氨基苯酚的寡核苷酸、肽和蛋白质上。苯胺-AuNPs在水溶液中稳定,与生物分子几乎没有非特异性吸附,并且在温和条件下(pH 6.5,1 mM氧化剂)能快速(30分钟)与邻氨基苯酚反应。