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利用振动光谱分析体液:血清葡萄糖的喇曼散射和红外吸收技术的直接比较。

Analysis of bodily fluids using vibrational spectroscopy: a direct comparison of Raman scattering and infrared absorption techniques for the case of glucose in blood serum.

机构信息

FOCAS Research Institute, Technological University Dublin, Kevin Street, Dublin 8, Ireland.

出版信息

Analyst. 2019 May 13;144(10):3334-3346. doi: 10.1039/c9an00125e.

Abstract

Analysis of biomarkers present in the blood stream can potentially deliver crucial information on patient health and indicate the presence of numerous pathologies. The potential of vibrational spectroscopic analysis of human serum for diagnostic purposes has been widely investigated and, in recent times, infrared absorption spectroscopy, coupled with ultra-filtration and multivariate analysis techniques, has attracted increasing attention, both clinical and commercial. However, such methods commonly employ a drying step, which may hinder the clinical work flow and thus hamper their clinical deployment. As an alternative, this study explores the use of Raman spectroscopy, similarly coupled with ultra-filtration and multivariate analysis techniques, to quantitatively monitor diagnostically relevant changes of glucose in liquid serum samples, and compares the results with similar analysis protocols using infrared spectroscopy of dried samples. The analysis protocols to detect the imbalances in glucose using Raman spectroscopy are first demonstrated for aqueous solutions and spiked serum samples. As in the case of infrared absorption studies, centrifugal filtration is utilised to deplete abundant analytes and to reveal the spectral features of Low Molecular Weight Fraction analytes in order to improve spectral sensitivity and detection limits. Improved Root Mean Square Error of Cross Validation (RMSECV) was observed for Raman prediction models, whereas slightly higher R2 values were reported for infrared absorption prediction models. Summarising, it is demonstrated that the Raman analysis protocol can yield accuracies which are comparable with those reported using infrared absorption based measurements of dried serum, without the need for additional drying steps.

摘要

对血液中生物标志物的分析可能提供关于患者健康的关键信息,并表明存在许多病理。已经广泛研究了利用人类血清的振动光谱分析进行诊断的潜力,并且最近,红外吸收光谱学与超滤和多元分析技术相结合,引起了越来越多的临床和商业关注。然而,此类方法通常采用干燥步骤,这可能会阻碍临床工作流程,从而阻碍其临床部署。作为替代方法,本研究探讨了使用拉曼光谱学同样结合超滤和多元分析技术,定量监测液体血清样本中葡萄糖的诊断相关变化,并将结果与使用干燥样本的红外光谱学进行的类似分析方案进行比较。首先针对水溶液和加标血清样本演示了用于检测葡萄糖失衡的拉曼光谱分析方案。与红外吸收研究一样,离心过滤用于耗尽丰富的分析物,并揭示低分子量分数分析物的光谱特征,以提高光谱灵敏度和检测限。与红外吸收预测模型相比,拉曼预测模型的交叉验证均方根误差(RMSECV)得到了改善,而报道的红外吸收预测模型的 R2 值略高。总之,证明了拉曼分析方案可以产生与使用干燥血清的基于红外吸收的测量报告的准确度相当的准确度,而无需额外的干燥步骤。

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