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Glucose sensing using near-infrared surface-enhanced Raman spectroscopy: Gold surfaces, 10-day stability, and improved accuracy

机译:使用近红外表面增强拉曼光谱仪进行葡萄糖感测:金表面,10天稳定性和更高的准确性

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This research presents the achievement of significant milestones toward the development of a minimally invasive, continuously monitoring, glucose-sensing platform based on the optical quantitation of glucose in interstitial fluid. We expand our initial successes in the measurement of glucose by surface-enhanced Raman scattering (SERS), demonstrating substantial improvements not only in the quality and optical properties of the substrate system itself but also in the robustness of the measurement methodology and the amenability of the technique to compact, diode laser-based instrumentation. Herein, we compare the long-term stability of gold to silver film over nanosphere (AuFON, AgFON) substrates functionalized with a partitioning self-assembled monolayer (SAM) using both electrochemical and SERS measurements. AuFONs were found to be stable for a period of at least 11 days. The switch to AuFONs not only provides a more stable surface for SAM formation but also yields better chemometric results, with improved calibration and validation over a range of 0.5-44 mM (10-800 mg/dL). Measured values for glucose concentrations in phosphate-buffered saline (pH similar to 7.4) based on 160 independent SERS measurements on AuFONs have a root-mean-square error of prediction of 2.7 mM (49.5 mg/dL), with 91% of the values falling within an extended A-B range on an expanded Clarke error grid. Furthermore, AuFONs exhibit surface plasmon resonances at longer wavelengths than similar AgFONs, which make them more efficient for SERS at near-infrared wavelengths, enabling the use of low-power diode lasers in future devices.
机译:这项研究提出了一个重大的里程碑,该进展基于对组织液中葡萄糖的光学定量,从而实现了微创,连续监测的葡萄糖传感平台的发展。我们扩大了通过表面增强拉曼散射(SERS)进行葡萄糖测量的初步成功,这不仅证明了底物系统本身的质量和光学性质,而且还证明了测量方法的稳健性和适用性的显着提高。基于二极管激光器的仪器的紧凑技术。在这里,我们比较了使用电化学和SERS测量功能,用分隔的自组装单层(SAM)功能化的纳米球(AuFON,AgFON)基底上的金和银膜的长期稳定性。发现AuFON稳定至少11天。改用AuFON不仅可以为SAM形成提供更稳定的表面,而且还可以产生更好的化学计量结果,在0.5-44 mM(10-800 mg / dL)的范围内具有更好的校准和验证。根据对AuFON进行的160次独立SERS测量得出的磷酸盐缓冲盐水(pH值类似于7.4)中葡萄糖浓度的测量值的预测均方根误差为2.7 mM(49.5 mg / dL),其中91%的值落在扩展的Clarke误差网格上的扩展AB范围内。此外,AuFON的表面等离子体共振比相似的AgFON更长,这使它们在近红外波长下对SERS更有效,从而可以在未来的设备中使用低功率二极管激光器。

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