Institute of Chemical Technologies and Analytics , Vienna University of Technology , Getreidemarkt 9/164-UPA , 1060 Vienna , Austria.
Laboratorio de Desarrollo Analítico y Quimiometría (LADAQ), Cátedra de Química Analítica I, Facultad de Bioquímica y Ciencias Biológicas , Universidad Nacional del Litoral-CONICET, Ciudad Universitaria , 3000 Santa Fe , Argentina.
Anal Chem. 2018 Jun 5;90(11):7072-7079. doi: 10.1021/acs.analchem.8b01632. Epub 2018 May 24.
In this work, we present a setup for mid-IR measurements of the protein amide I and amide II bands in aqueous solution. Employing a latest generation external cavity-quantum cascade laser (EC-QCL) at room temperature in pulsed operation mode allowed implementing a high optical path length of 31 μm that ensures robust sample handling. By application of a data processing routine, which removes occasionally deviating EC-QCL scans, the noise level could be lowered by a factor of 4. The thereby accomplished signal-to-noise ratio is better by a factor of approximately 2 compared to research-grade Fourier transform infrared (FT-IR) spectrometers at equal acquisition times. Employing this setup, characteristic spectral features of three representative proteins with different secondary structures could be measured at concentrations as low as 1 mg mL. Mathematical evaluation of the spectral overlap confirms excellent agreement of the quantum cascade laser infrared spectroscropy (QCL-IR) transmission measurements with protein spectra acquired by FT-IR spectroscopy. The presented setup combines performance surpassing FT-IR spectroscopy with large applicable optical paths and coverage of the relevant spectral range for protein analysis. This holds high potential for future EC-QCL-based protein studies, including the investigation of dynamic secondary structure changes and chemometrics-based protein quantification in complex matrices.
在这项工作中,我们展示了一种用于测量水相中的蛋白质酰胺 I 和酰胺 II 带的中红外测量设置。在室温下采用最新一代的外腔量子级联激光器(EC-QCL)在脉冲操作模式下,实现了 31μm 的高光程,确保了稳健的样品处理。通过应用一个数据处理程序,该程序可以去除偶尔偏离的 EC-QCL 扫描,噪声水平可以降低 4 倍。由此实现的信噪比与同等采集时间的研究级傅里叶变换红外(FT-IR)光谱仪相比,提高了约 2 倍。使用该设置,可以在低至 1mg/mL 的浓度下测量具有不同二级结构的三种代表性蛋白质的特征光谱特征。对光谱重叠的数学评估证实,量子级联激光红外光谱法(QCL-IR)的透射测量与通过 FT-IR 光谱法获得的蛋白质光谱具有极好的一致性。所提出的设置结合了超越 FT-IR 光谱法的性能,具有大的适用光程和蛋白质分析相关光谱范围的覆盖范围。这为未来基于 EC-QCL 的蛋白质研究提供了巨大的潜力,包括对复杂基质中动态二级结构变化和基于化学计量学的蛋白质定量的研究。