Heise H M, Marbach R, Janatsch G, Kruse-Jarres J D
Anal Chem. 1989 Sep 15;61(18):2009-15. doi: 10.1021/ac00193a004.
A spectral analysis of whole EDTA blood was undertaken by using attenuated total reflection and Fourier-transform infrared spectroscopy. The concentration of blood glucose was measured by an enzymatic method using glucose dehydrogenase and ranged between 40 and 290 mg/dL with an average concentration of 90.4 mg/dL. Multivariate calibration with the partial least-squares (PLS) algorithm was performed on spectral data between 1500 and 750 cm-1 showing a varying background from different unidentified interfering compounds. Cross validation was carried out for optimizing the PLS model. PRESS was 19.8 mg/dL, which was calculated on the basis of 127 standards, whereas the estimated standard deviation for the calibration fit was computed to be 11.9 mg/dL. Infrared spectroscopy can be used for monitoring glucose levels within the normal physiological range in a complex matrix like whole blood as an alternative to electrochemical sensors.
采用衰减全反射和傅里叶变换红外光谱法对全乙二胺四乙酸(EDTA)血样进行光谱分析。使用葡萄糖脱氢酶通过酶法测定血糖浓度,范围在40至290mg/dL之间,平均浓度为90.4mg/dL。对1500至750cm-1之间的光谱数据进行偏最小二乘法(PLS)算法的多元校准,这些数据显示出来自不同未知干扰化合物的变化背景。进行交叉验证以优化PLS模型。预测残差平方和(PRESS)为19.8mg/dL,基于127个标准计算得出,而校准拟合的估计标准差经计算为11.9mg/dL。红外光谱可作为电化学传感器的替代方法,用于监测全血等复杂基质中正常生理范围内的葡萄糖水平。