Faculdade de Ciências e Tecnologia, UNESP Universidade Estadual Paulista, Presidente Prudente/SP, 19060-900, Brazil.
Appl Spectrosc. 2013 May;67(5):563-9. doi: 10.1366/12-06909.
Plasmon-enhanced spectroscopic techniques have expanded single-molecule detection (SMD) and are revolutionizing areas such as bio-imaging and single-cell manipulation. Surface-enhanced (resonance) Raman scattering (SERS or SERRS) combines high sensitivity with molecular-fingerprint information at the single-molecule level. Spectra originating from single-molecule SERS experiments are rare events, which occur only if a single molecule is located in a hot-spot zone. In this spot, the molecule is selectively exposed to a significant enhancement associated with a high, local electromagnetic field in the plasmonic substrate. Here, we report an SMD study with an electrostatic approach in which a Langmuir film of a phospholipid with anionic polar head groups (PO4(-)) was doped with cationic methylene blue (MB), creating a homogeneous, two-dimensional distribution of dyes in the monolayer. The number of dyes in the probed area of the Langmuir-Blodgett (LB) film coating the Ag nanostructures established a regime in which single-molecule events were observed, with the identification based on direct matching of the observed spectrum at each point of the mapping with a reference spectrum for the MB molecule. In addition, advanced fitting techniques were tested with the data obtained from micro-Raman mapping, thus achieving real-time processing to extract the MB single-molecule spectra.
等离子体增强光谱技术扩展了单分子检测(SMD),并正在改变生物成像和单细胞操作等领域。表面增强(共振)拉曼散射(SERS 或 SERRS)将单分子水平的高灵敏度与分子指纹信息结合在一起。源自单分子 SERS 实验的光谱是罕见事件,只有当单个分子位于热点区域时才会发生。在这个点上,分子选择性地暴露于与等离子体衬底中的高局部电磁场相关的显著增强。在这里,我们报告了一种静电方法的 SMD 研究,其中带负电荷的极性头基团(PO4(-))的磷脂的 Langmuir 膜掺杂有阳离子亚甲基蓝(MB),在单层中形成染料的均匀二维分布。在涂覆 Ag 纳米结构的 Langmuir-Blodgett(LB)膜的探测区域中的染料数量建立了一个可以观察到单分子事件的体系,其基于在映射的每个点处观察到的光谱与 MB 分子的参考光谱的直接匹配来进行识别。此外,还对从微拉曼映射获得的数据进行了高级拟合技术测试,从而实现了实时处理以提取 MB 单分子光谱。