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通过固态微波辐射快速合成三维硫掺杂多孔石墨烯,用于血浆样品预处理中的蛋白质去除。

Rapid synthesis of three-dimensional sulfur-doped porous graphene via solid-state microwave irradiation for protein removal in plasma sample pretreatment.

机构信息

School of Chemistry and Chemical Engineering, Chongqing University, Chongqing 401331, China.

School of Pharmacy, Southwest Medical University, Luzhou, Sichuan 646000, China.

出版信息

Talanta. 2018 Aug 1;185:528-536. doi: 10.1016/j.talanta.2018.04.027. Epub 2018 Apr 9.

Abstract

In this work, we prepared three-dimensional sulfur-doped porous graphene (3D-SPG) via solid-state microwave method and first introduced it to plasma sample pretreatment as adsorbent for the removal of proteins. The efficient heating effect of solid-state microwave irradiation endowed the as-prepared 3D-SPG with large specific surface area, porous structures and sulfur-doped conjugated π electron surface, thus producing an outstanding adsorbent for proteins adsorption. The adsorption behavior of 3D-SPG towards proteins was explored using bovine serum albumin (BSA) as the model protein and several kinetic models and isotherm models were employed to describe the adsorption process. The results indicated that BSA was adsorbed onto 3D-SPG in a monolayer manner with high adsorption capacity, and chemisorption and intraparticle diffusion was the rate-controlling step in proteins adsorption process. By applying 3D-SPG as adsorbent to remove proteins in real rat plasma, we found that 3D-SPG solid phase extraction (SPE) gained exceedingly high protein removal efficiency compared with other plasma pretreatment methods, suggesting that 3D-SPG SPE could effectively prevent the deterioration of column performance and decrease the interference caused by matrix effect in the follow-up analysis. Furthermore, in comparison with the tandem mass spectra results between 3D-SPG SPE and methanol precipitation, 3D-SPG SPE demonstrated the ability to extract the protein-binding metabolites which usually could not be extracted by methanol precipitation. This ability made 3D-SPG SPE of great value in untargeted metabolomics profiling, because 3D-SPG SPE could be a complementary method to methanol precipitation to improve the coverage of metabolites.

摘要

在这项工作中,我们通过固态微波法制备了三维硫掺杂多孔石墨烯(3D-SPG),并首次将其引入等离子体样品预处理中,作为去除蛋白质的吸附剂。固态微波辐射的高效加热效果赋予了所制备的 3D-SPG 具有大的比表面积、多孔结构和硫掺杂共轭π电子表面,从而产生了一种用于蛋白质吸附的出色吸附剂。使用牛血清白蛋白(BSA)作为模型蛋白,通过几种动力学模型和等温线模型来探索 3D-SPG 对蛋白质的吸附行为。结果表明,BSA 以单层方式吸附在 3D-SPG 上,具有高吸附容量,并且化学吸附和颗粒内扩散是蛋白质吸附过程的速率控制步骤。通过将 3D-SPG 用作吸附剂来去除实际大鼠血浆中的蛋白质,我们发现 3D-SPG 固相萃取(SPE)与其他血浆预处理方法相比获得了极高的蛋白质去除效率,这表明 3D-SPG SPE 可以有效地防止柱性能恶化并降低基质效应引起的干扰后续分析。此外,与 3D-SPG SPE 和甲醇沉淀的串联质谱结果相比,3D-SPG SPE 具有提取通常无法通过甲醇沉淀提取的蛋白质结合代谢物的能力。这种能力使 3D-SPG SPE 在非靶向代谢组学分析中具有很高的价值,因为 3D-SPG SPE 可以作为甲醇沉淀的补充方法来提高代谢物的覆盖度。

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