Instituto de Investigación e Innovación Biomédica de Cádiz (INiBICA), Hospital Universitario Puerta del Mar, Universidad de Cádiz, Cádiz, Spain.
Associate Unit CSIC-University of Huelva "Atmospheric Pollution", Center for Research in Sustainable Chemistry - CIQSO, University of Huelva, Huelva, Spain.
Methods Mol Biol. 2023;2571:123-132. doi: 10.1007/978-1-0716-2699-3_12.
In this chapter, we describe a metallomics method based on protein precipitation under non-denaturing conditions and further analysis by inductively coupled plasma mass spectrometry for high-throughput metal speciation in plasma and erythrocyte samples. This methodology enables to study the total multielemental profile of these biological matrices, as well as to quantify the metal fractions conforming the metallometabolome and the metalloproteome. Furthermore, the analytical coverage comprises several essential and toxic metal elements, namely aluminum, arsenic, cadmium, cobalt, chromium, copper, iron, lithium, manganese, molybdenum, nickel, lead, selenium, vanadium, and zinc. Altogether, the metallomics method here proposed represents an excellent approach to comprehensively characterize the metal biodistribution in human peripheral blood, which would enable to decipher the role of metal homeostasis in health and disease, and particularly in childhood obesity.
在本章中,我们描述了一种基于非变性条件下蛋白质沉淀的金属组学方法,并进一步通过电感耦合等离子体质谱法对血浆和红细胞样品中的金属形态进行高通量分析。该方法能够研究这些生物基质的总多元素图谱,以及定量构成金属代谢组和金属蛋白质组的金属分数。此外,分析范围包括几种必需和有毒的金属元素,即铝、砷、镉、钴、铬、铜、铁、锂、锰、钼、镍、铅、硒、钒和锌。总之,这里提出的金属组学方法代表了一种全面描述人体外周血液中金属分布的优秀方法,这将有助于揭示金属内稳态在健康和疾病中的作用,特别是在儿童肥胖症中的作用。