首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Restricted access carbon nanotubes for direct extraction of cadmium from human serum samples followed by atomic absorption spectrometry analysis
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Restricted access carbon nanotubes for direct extraction of cadmium from human serum samples followed by atomic absorption spectrometry analysis

机译:限制进入的碳纳米管,用于从人血清样品中直接提取镉,然后进行原子吸收光谱分析

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In this paper, we propose a new sorbent that is able to extract metal ions directly from untreated biological fluids, simultaneously excluding all proteins from these samples. The sorbent was obtained through the modification of carbon nanotubes (CNTs) with an external bovine serum albumin (BSA) layer, resulting in restricted access carbon nanotubes (RACNTs). The BSA layer was fixed through the interconnection between the amine groups of the BSA using glutaraldehyde as cross-linker. When a protein sample is percolated through a cartridge containing RACNTs and the sample pH is higher than the isoelectric point of the proteins, both proteins from the sample and the BSA layer are negatively ionized. Thus, an electrostatic repulsion prevents the interaction between the proteins from the sample on the RACNTs surface. At the same time, metal ions are adsorbed in the CNTs (core) after their passage through the chains of proteins. The Cd2+ ion was selected for a proof-of-principle case to test the suitability of the RACNTs due to its toxicological relevance. RACNTs were able to extract Cd2+ and exclude almost 100% of the proteins from the human serum samples in an online solid-phase extraction system coupled with thermospray flame furnace atomic absorption spectrometry. The limits of detection and quantification were,0.24 and 0.80 mu g L-1, respectively. The sampling frequency was 8.6 h(-1), and the intra- and inter-day precisions at the 0.80, 15.0, and 30.0 mu g L-1 Cd2+ levels were all lower than 10.1% (RSD). The recoveries obtained for human blood serum samples fortified with Cd2+ ranged from 85.0% to 112.0%. The method was successfully applied to analyze Cd2+ directly from six human blood serum samples without any pretreatment, and the observed concentrations ranged from < LOQ to 2.52 mu g L-1. (C) 2014 Elsevier B.V. All rights reserved.
机译:在本文中,我们提出了一种新型吸附剂,该吸附剂能够直接从未经处理的生物流体中提取金属离​​子,同时从这些样品中排除所有蛋白质。通过用外部牛血清白蛋白(BSA)层修饰碳纳米管(CNT)来获得吸附剂,从而导致限制进入的碳纳米管(RACNT)。使用戊二醛作为交联剂,通过BSA胺基之间的互连固定BSA层。当蛋白质样品通过包含RACNT的柱子渗滤且样品的pH值高于蛋白质的等电点时,来自样品和BSA层的蛋白质均被负离子化。因此,静电排斥作用阻止了RACNTs表面上样品中蛋白质之间的相互作用。同时,金属离子通过蛋白质链后会吸附在CNT(核心)中。由于其毒理学相关性,选择Cd2 +离子作为原理证明案例来测试RACNT的适用性。 RACNT能够在在线固相萃取系统与热喷雾火焰炉原子吸收光谱仪结合的条件下,从人体血清样品中萃取Cd2 +并排除几乎100%的蛋白质。检测限和定量限分别为0.24和0.80μg L-1。采样频率为8.6 h(-1),在0.80、15.0和30.0μgL-1 Cd2 +水平下的日内和日间精度均低于10.1%(RSD)。对于使用Cd2 +强化的人血清样品,回收率在85.0%至112.0%之间。该方法成功地用于直接分析六种人血清样品中的Cd2 +,无需任何预处理,所观察到的浓度范围从

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