Lin Tsung-Wu, Wu Hong-Yi, Tasi Ting-Ti, Lai Ying-Huang, Shen Hsin-Hui
Department of Chemistry, Tunghai University, No. 181, Sec. 3, Taichung Port Rd., Taichung City 40704, Taiwan.
Phys Chem Chem Phys. 2015 Jul 28;17(28):18443-8. doi: 10.1039/c5cp02805a.
A novel surface-enhanced Raman scattering (SERS) sensing system which operates by the self-assembly of Ag nanoparticles (AgNPs) onto the nanocomposite of AgNPs and graphene oxide (AgNP-GO) in the presence of two complementary DNAs has been developed. In this system, AgNP-GO serves as a SERS-active substrate. The AgNPs with the modification of non-fluorescent 4-mercaptobenzoic acid (4-MBA) act as highly efficient Raman probes for DNA hybridization. When probe DNAs on AgNP-GO are complementary to target DNAs on AgNPs functionalized with 4-MBA, the DNA hybridization occurring directs the self-assembly of AgNPs onto AgNP-GO, leading to the creation of SERS hot spots. Due to the fact that partial 4-MBA molecules are located in the region of the hot spots, their SERS signals are greatly enhanced, indicating successful DNA hybridization. It is noteworthy that the size of AgNPs contributes significantly to the enhancement of SERS activity. The detection limit of the target DNAs at the pM level can be achieved through the self-assembly of large sized AgNPs onto AgNP-GO. More importantly, the AgNP-AgNP-GO system shows reproducible SERS signals in proportion to the logarithm of the target DNA concentrations spanning from 10(-6) to 10(-12) M and the excellent capability for multiplex DNA detection.
一种新型的表面增强拉曼散射(SERS)传感系统已被开发出来,该系统通过在两种互补DNA存在的情况下,将银纳米颗粒(AgNPs)自组装到AgNPs与氧化石墨烯(AgNP-GO)的纳米复合材料上进行工作。在这个系统中,AgNP-GO作为一种SERS活性基底。经非荧光4-巯基苯甲酸(4-MBA)修饰的AgNPs作为DNA杂交的高效拉曼探针。当AgNP-GO上的探针DNA与用4-MBA功能化的AgNPs上的靶DNA互补时,发生的DNA杂交引导AgNPs自组装到AgNP-GO上,导致形成SERS热点。由于部分4-MBA分子位于热点区域,它们的SERS信号被大大增强,表明DNA杂交成功。值得注意的是,AgNPs的尺寸对SERS活性的增强有显著贡献。通过将大尺寸的AgNPs自组装到AgNP-GO上,可以实现对pM水平的靶DNA的检测限。更重要的是,AgNP-AgNP-GO系统显示出与10(-6)至10(-12)M范围内的靶DNA浓度的对数成比例的可重复SERS信号,以及出色的多重DNA检测能力。