Laboratory of Atmospheric Chemistry, Paul Scherrer Institut, 5232 Villigen PSI, Switzerland.
Rapid Commun Mass Spectrom. 2012 Sep 30;26(18):2173-85. doi: 10.1002/rcm.6334.
Isotope analysis of carbohydrates is important for improved understanding of plant carbon metabolism and plant physiological response to the environment. High-performance liquid chromatography/isotope ratio mass spectrometry (HPLC/IRMS) for direct compound-specific δ(13)C measurements of soluble carbohydrates has recently been developed, but the still challenging sample preparation and the fact that no single method is capable of separating all compounds of interest hinder its wide-spread application. Here we tested in detail a chromatography method in alkaline media.
We examined the most suitable chromatographic conditions for HPLC/IRMS analysis of carbohydrates in aqueous conifer needle extracts using a CarboPac PA20 anion-exchange column with NaOH eluent, paying specific attention to compound yields, carbon isotope fractionation processes and the reproducibility of the method. Furthermore, we adapted and calibrated sample preparation methods for HPLC/IRMS analysis. OnGuard II cartridges were used for sample purification.
Good peak separation and highly linear and reproducible concentration and δ(13)C measurements were obtained. The alkaline eluent was observed to induce isomerization of hexoses, detected as reduced yields and (13)C fractionation of the affected compounds. A reproducible pre-purification method providing ~100% yield for the carbohydrate compounds of interest was calibrated.
The good level of peak separation obtained in this study is reflected in the good precision and linearity of concentration and δ(13)C results. The data provided crucial information on the behaviour of sugars in LC analysis with alkaline media. The observations highlight the importance for the application of compound-matched standard solution for the detection and correction of instrumental biases in concentration and δ(13)C analysis performed under identical chromatographic conditions. The calibrated pre-purification method is well suited for studies with complex matrices that disable the use of a spiked internal standard for the detection of procedural losses.
对碳水化合物进行同位素分析对于深入了解植物的碳代谢以及植物对环境的生理响应至关重要。近来,已开发出用于直接对可溶性碳水化合物进行化合物特异性δ(13)C 测量的高效液相色谱/同位素比质谱法(HPLC/IRMS),但仍然具有挑战性的样品制备以及没有单一方法能够分离所有感兴趣的化合物,这阻碍了其广泛应用。在此,我们详细测试了一种在碱性介质中的色谱方法。
我们使用 CarboPac PA20 阴离子交换柱和 NaOH 洗脱液,检查了最适合针叶树针状提取物中碳水化合物的 HPLC/IRMS 分析的色谱条件,特别注意化合物产率、碳同位素分馏过程和方法的重现性。此外,我们还对 HPLC/IRMS 分析的样品制备方法进行了改进和校准。OnGuard II 柱用于样品净化。
获得了良好的峰分离以及高度线性和重现性的浓度和 δ(13)C 测量值。观察到碱性洗脱液会诱导己糖的异构化,表现为受影响化合物的产率降低和(13)C 分馏。校准了一种可提供约 100%感兴趣碳水化合物产率的可重现预净化方法。
本研究中获得的良好峰分离水平反映在浓度和 δ(13)C 结果的良好精密度和线性度上。这些数据为在碱性介质中进行 LC 分析时糖的行为提供了重要信息。这些观察结果强调了在相同色谱条件下进行浓度和 δ(13)C 分析时,应用与化合物匹配的标准溶液来检测和校正仪器偏差的重要性。经过校准的预净化方法非常适合那些使用加标内标会导致程序损失的复杂基质的研究。