Wangoo Nishima, Bhasin K K, Boro Robin, Suri C Raman
Institute of Microbial Technology, Sector 39-A, Chandigarh 160036, India.
Anal Chim Acta. 2008 Mar 3;610(1):142-8. doi: 10.1016/j.aca.2008.01.033. Epub 2008 Jan 19.
In this work, we report the size tunable synthesis of water-dispersed gold nanoparticles by using octadecylamine (ODA) as the reducing agent, that electrostatically complexes with the chloroaurate ions, reduces them, and subsequently caps the gold nanoparticles. Amine-capped gold nanoparticles, thus formed, were subsequently coordinated with a secondary monolayer of an anionic surfactant, sodium bis(2-ethylhexyl)-sulfosuccinate (AOT) which helps in providing sufficient hydrophilicity to the gold nanoparticles. Functionalized gold nanoparticles were characterized by UV-vis, IR spectrophotometric, dynamic light scattering, zeta-potential and transmission electron microscopic techniques, which demonstrated high stability of gold nanoparticles in aqueous media, indicating stabilization via bilayers of ODA and AOT. The gold nanoparticles were further conjugated with a protein (bovine serum albumin) and the interaction was investigated by circular dichroism studies as well as by measuring the fluorescence quenching of the tryptophan residues of protein molecules after the binding of nanoparticles to specific sites of the protein. The binding constant and the stoichiometry values indicated that the particles with larger core size are less site-specific but show higher binding affinity with protein molecules. The use of a bio-compatible synthetic process and the stabilization of the gold nanoparticles by ODA and AOT are interesting from the point of view of making bioprobes for life science applications.
在本工作中,我们报道了以十八胺(ODA)作为还原剂可调控合成水分散性金纳米颗粒,十八胺与氯金酸根离子发生静电络合,将其还原,随后包覆金纳米颗粒。如此形成的胺包覆金纳米颗粒随后与阴离子表面活性剂双(2 - 乙基己基)磺基琥珀酸钠(AOT)的二级单分子层配位,这有助于为金纳米颗粒提供足够的亲水性。通过紫外可见光谱、红外光谱、动态光散射、zeta电位和透射电子显微镜技术对功能化金纳米颗粒进行了表征,这些技术表明金纳米颗粒在水性介质中具有高稳定性,表明通过ODA和AOT双层实现了稳定化。金纳米颗粒进一步与一种蛋白质(牛血清白蛋白)缀合,并通过圆二色性研究以及测量纳米颗粒与蛋白质分子特定位点结合后蛋白质分子色氨酸残基的荧光猝灭来研究相互作用。结合常数和化学计量值表明,具有较大核心尺寸的颗粒位点特异性较低,但与蛋白质分子表现出更高的结合亲和力。从制备用于生命科学应用的生物探针的角度来看,使用生物相容性合成方法以及通过ODA和AOT对金纳米颗粒进行稳定化是很有意义的。