Rumiantseva Lidiia, Osipenko Sergey, Zharikov Artem, Kireev Albert, Nikolaev Evgeny N, Kostyukevich Yury
Skolkovo Institute of Science and Technology, 121205 Moscow, Russia.
Int J Mol Sci. 2022 Mar 25;23(7):3585. doi: 10.3390/ijms23073585.
Mono- and polysaccharides are an essential part of every biological system. Identifying underivatized carbohydrates using mass spectrometry is still a challenge because carbohydrates have a low capacity for ionization. Normally, the intensities of protonated carbohydrates are relatively low, and in order to increase the corresponding peak height, researchers add Na, K, or NHto the solution. However, the fragmentation spectra of the corresponding ions are very poor. Based on this, reliably identifying carbohydrates in complex natural and biological objects can benefit frommeasuring additional molecular descriptors, especially those directly connected to the molecular structure. Previously, we reported that the application of the isotope exchange approach (H/D and O/O) to high-resolution mass spectrometry can increase the reliability of identifying drug-like compounds. Carbohydrates possess many -OH and -COOH groups, making it reasonable to expect that the isotope exchange approach would have considerable potential for detecting carbohydrates. Here, we used a collection of standard carbohydrates to investigate the isotope exchange reaction (H/D and O/O) in carbohydrates and estimate its analytical applications.
单糖和多糖是每个生物系统的重要组成部分。使用质谱法鉴定未衍生化的碳水化合物仍然是一项挑战,因为碳水化合物的电离能力较低。通常,质子化碳水化合物的强度相对较低,为了增加相应的峰高,研究人员会向溶液中添加Na、K或NH 。然而,相应离子的碎裂谱非常差。基于此,可靠地鉴定复杂天然和生物样品中的碳水化合物可受益于测量额外的分子描述符,尤其是那些直接与分子结构相关的描述符。此前,我们报道了将同位素交换方法(H/D和O/O)应用于高分辨率质谱可提高鉴定类药物化合物的可靠性。碳水化合物含有许多-OH和-COOH基团,因此可以合理预期同位素交换方法在检测碳水化合物方面具有相当大的潜力。在这里,我们使用一组标准碳水化合物来研究碳水化合物中的同位素交换反应(H/D和O/O)并评估其分析应用。