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Sensitive Raman spectroscopy of lipids based on drop deposition using DCDR and SERS

机译:使用DCDR和SERS的基于滴沉积的脂质敏感拉曼光谱

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摘要

Raman spectroscopy is widely used for study of lipids and membrane models. A severe limitation of this technique lies in the low Raman cross section requiring high sample concentrations. We report sensitive detection of synthetic 1,2-dimyristoyl-3-trimethylammonium-propane (DMTAP) lipid employing two Raman techniques with improved sensitivity: drop coating deposition Raman (DCDR) and surface-enhanced Raman scattering (SERS) spectroscopies. DCDR provided well-reproducible DMTAP spectra without considerable loss of its solution properties if measured from the 'coffee ring' pattern of a drop dried on a SpectRIMTM plate. DMTAP was detected at ~10 μM initial solution concentration, which is about three orders of magnitude lower than that for conventional Raman spectroscopy. Moreover, SERS spectra from dried ring of Ag hydrosol/DMTAP system were obtained down to ~0.3 μM DMTAP concentration, which means that sensitivity of SERS is about five orders of magnitude higher than that of conventional Raman spectroscopy. In contrast to the DCDR technique, good SERS spectra of DMTAP were obtained only from some spots of the ring containing big nanoparticle aggregates, and the structural properties of DMTAP were significantly perturbed by adsorption on the Ag nanoparticles.
机译:拉曼光谱被广泛用于脂质和膜模型的研究。该技术的严重局限在于低拉曼横截面要求高样品浓度。我们报告了灵敏的合成1,2-二肉豆蔻基-3-三甲基铵-丙烷(DMTAP)脂质检测,采用两种拉曼技术具有更高的灵敏度:滴涂沉积拉曼(DCDR)和表面增强拉曼散射(SERS)光谱。如果从在SpectRIMTM板上干燥的液滴的“咖啡环”图案进行测量,DCDR可提供可重现的DMTAP光谱,而不会显着降低其溶液性质。在约10μM初始溶液浓度下检测到DMTAP,该浓度比常规拉曼光谱法低约三个数量级。此外,从低至约0.3μMDMTAP浓度的银水溶胶/ DMTAP系统干燥环获得的SERS光谱,这意味着SERS的灵敏度比常规拉曼光谱法高约五个数量级。与DCDR技术相反,仅从含有大纳米颗粒聚集体的环的某些点获得了DMTAP的良好SERS光谱,并且DMTAP的结构性质被吸附在Ag纳米颗粒上而受到显着干扰。

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