Lim I-Im S, Ip Wui, Crew Elizabeth, Njoki Peter N, Mott Derrick, Zhong Chuan-Jian, Pan Yi, Zhou Shuiqin
Department of Chemistry, State University of New York at Binghamton, Binghamton, New York 13902, USA.
Langmuir. 2007 Jan 16;23(2):826-33. doi: 10.1021/la062334t.
This paper reports the findings of an investigation of the reactivity and assembly of gold nanoparticles mediated by homocysteine (Hcys), a thiol-containing amino acid found in plasma. The aim is to gain insight into the interparticle interaction and reactivity, which has potential application for the detection of thiol-containing amino acids. By monitoring the evolution of the surface plasmon resonance absorption and the dynamic light scattering of gold nanoparticles in the presence of Hcys, the assembly was shown to be dependent on the nature and concentration of the electrolytes, reflecting an effective screening of the diffuse layer around the initial citrate-capped nanoparticles that decreases the barrier to the Hcys adsorption onto the surface, and around the subsequent Hcys-capped nanoparticles that facilitate the zwitterion-type electrostatic interactions between amino acid groups of Hcys bound to different nanoparticles. A key element of the finding is that the interparticle zwitterion interaction of the Hcys-Au system is much stronger than the expectation for a simple Hcys or Au solution, a new phenomenon originating from the unique nanoscale interparticle interaction. The strength and reversibility of the interparticle zwitterion-type electrostatic interactions between amino acid groups are evidenced by the slow disassembly upon increasing pH at ambient temperatures and its acceleration at elevated temperature. These findings provide new insight into the precise control of interfacial interactions and reactivities between amino acids anchored to nanoparticles and have broad implications in the development of colorimetric nanoprobes for amino acids.
本文报道了一项关于由同型半胱氨酸(Hcys,一种存在于血浆中的含硫氨基酸)介导的金纳米颗粒的反应性和组装的研究结果。目的是深入了解颗粒间的相互作用和反应性,这对于含硫氨基酸的检测具有潜在应用价值。通过监测在Hcys存在下金纳米颗粒的表面等离子体共振吸收的演变和动态光散射,结果表明组装过程取决于电解质的性质和浓度,这反映了对初始柠檬酸盐包覆纳米颗粒周围扩散层的有效筛选,该筛选降低了Hcys吸附到表面的障碍,以及对随后的Hcys包覆纳米颗粒周围扩散层的有效筛选,这促进了结合在不同纳米颗粒上的Hcys氨基酸基团之间的两性离子型静电相互作用。该发现的一个关键要素是,Hcys - Au系统的颗粒间两性离子相互作用比简单的Hcys或Au溶液的预期要强得多,这是一种源自独特纳米级颗粒间相互作用的新现象。氨基酸基团之间颗粒间两性离子型静电相互作用的强度和可逆性通过在环境温度下pH升高时的缓慢解离以及在升高温度下的加速解离得到证明。这些发现为精确控制锚定在纳米颗粒上的氨基酸之间的界面相互作用和反应性提供了新的见解,并在氨基酸比色纳米探针的开发中具有广泛的意义。