Callejón-Leblic Belén, Rodríguez-Moro Gema, García-Barrera Tamara, Gómez-Ariza José Luis
Department of Chemistry, Faculty of Chemistry, University of Huelva, Huelva, Spain.
Campus of International Excellence A3, University of Huelva, Huelva, 21007, Spain.
Methods Mol Biol. 2018;1661:163-175. doi: 10.1007/978-1-4939-7258-6_12.
Selenium is an essential element incorporated to different proteins with important biological functions in connection to antioxidant activity, cancer-protective properties, neurodegenerative pathologies, and prevention of effects of diabetes, among others. In addition, selenoamino acids play a basic role in the global equilibrium of key selenium-biomolecules synthesis, including selenoprotein P, selenoalbumin, and glutathione peroxidase. Homeostasis of these selenium-containing biomolecules involves different organs in living organisms including human, and bloodstream is the connection fluid in this process. Therefore, it is very important to have an analytical methodology suitable for selenium proteins and metabolites speciation in serum and plasma samples. For this purpose, a simultaneous speciation method for Se-containing biomolecules in serum/plasma is described on the basis of in series three-dimensional chromatography: size exclusion, affinity, and anion exchange high performance liquid chromatography (3D/SE-AF-AEC-HPLC), using different columns of each type and hyphenation to inductively coupled plasma-(quadrupole) mass spectrometry (ICP-MS). The method allows the quantitative simultaneous analysis of selenoprotein P (SeP), extracellular glutathione peroxidase (eGPx), selenoalbumin (SeAlb), selenite, and selenate in serum (from human and mouse) using species-unspecific isotope dilution (SUID). In addition, a simplified two-dimensional approach (2D/SE-AF-HPLC-SUID-ICP-MS) is described when selenium metabolites are globally analyzed. The method provides detection limits in the range 0.2-1.3 ng of Se g and avoids typical interferences in this matrix from chloride and bromide with a chromatographic runtime less than 35 min.
硒是一种必需元素,它与不同的蛋白质结合,在抗氧化活性、癌症防护特性、神经退行性病变以及预防糖尿病影响等方面具有重要的生物学功能。此外,硒代氨基酸在关键硒生物分子合成的全球平衡中发挥着基础作用,这些生物分子包括硒蛋白P、硒白蛋白和谷胱甘肽过氧化物酶。这些含硒生物分子的稳态涉及包括人类在内的生物体中的不同器官,而血液是这一过程中的连接流体。因此,拥有一种适用于血清和血浆样本中硒蛋白和代谢物形态分析的方法非常重要。为此,本文描述了一种基于串联三维色谱法的血清/血浆中含硒生物分子的同时形态分析方法:尺寸排阻、亲和和阴离子交换高效液相色谱法(3D/SE-AF-AEC-HPLC),使用每种类型的不同色谱柱,并与电感耦合等离子体(四极杆)质谱联用(ICP-MS)。该方法允许使用非物种特异性同位素稀释(SUID)对血清(来自人和小鼠)中的硒蛋白P(SeP)、细胞外谷胱甘肽过氧化物酶(eGPx)、硒白蛋白(SeAlb)、亚硒酸盐和硒酸盐进行定量同时分析。此外,当对硒代谢物进行整体分析时,还描述了一种简化的二维方法(2D/SE-AF-HPLC-SUID-ICP-MS)。该方法的检测限在0.2 - 1.3 ng Se/g范围内,避免了该基质中氯离子和溴离子的典型干扰,色谱运行时间小于35分钟。