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Online In-Tube Solid-Phase Extraction Using a Nonfunctionalized PVC Tube Coupled with ICPMS for in Vivo Monitoring of Trace Metals in Rat Brain Microdialysates

机译:使用非功能化PVC管和ICPMS的在线管内固相萃取用于体内监测大鼠脑微透析液中的痕量金属

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We have developed a simple, automatic, online in-tube solid-phase extraction (SPE) method for the preconcentration of trace elements from saline samples. The method takes advantage of the adsorption of trace metal ions onto the interior of a nonfunctionalized PVC tube as a means of separation from the matrix salt. The adsorption of transition metal ions is presumably dominated by Lewis acid/base interactions, which facilitate the formation of metal-PVC complexes. For simultaneous determination of multiple trace metals in the extracellular fluid from the brains of anesthetized rats, we developed an online analytical system comprising microdialysis sampling, the established in-tube extraction procedure, and ICPMS. In the extraction step, the efficiency was optimal when the pH of the sample was adjusted to 8.0 using phosphate buffer. After extraction onto the interior of PVC tube, the adsorbed analytes were eluted with 0.5percent HNO_(3) prior to online ICPMS measurement. For those elements present in the extracellular fluid at less than nanogram-permilliliter concentrations (i.e., Cu, Zn, and Mn), a temporal resolution of 12 min was required to collect enough microdialysate to meet the sensitivity requirements of the ICPMS instrument. Noteworthily, because washing and postconditioning the interior of PVC tube are not necessary, a relatively unsophisticated and clean procedure was attained and extremely low detection limits in the range of 5.0 to 510 ng L~(-1) were thus obtained for the analysis of Mn, Cu, Zn, Pb, Cd, Ni, and Co in microdialysate samples of 8 (mu)L by ICPMS. To the best of our knowledge, this study is the first to exploit PVC peristaltic tubing as an SPE adsorbent in the laboratory-on-valve mode for online sample treatment and trace metal preconcentration prior to ICPMS measurement. We confirmed the analytical reliability of this method through the analysis of the certified reference material SLEW-3 (estuarine water) and 2670a (human urine) and demonstrated its applicability through simultaneous in vivo monitoring of the basal concentrations and concentration profiles of multiple metal ions in the brain extracellular fluid of a living rat.
机译:我们已经开发了一种简单,自动的在线管内固相萃取(SPE)方法,用于从盐水样品中预富集微量元素。该方法利用了痕量金属离子在非功能化PVC管内部的吸附,作为与基质盐分离的一种手段。过渡金属离子的吸附大概是由路易斯酸/碱相互作用决定的,这有助于金属-PVC络合物的形成。为了同时测定麻醉大鼠大脑细胞外液中的多种微量金属,我们开发了一种在线分析系统,该系统包括微透析采样,已建立的试管内提取程序和ICPMS。在萃取步骤中,使用磷酸盐缓冲液将样品的pH值调节至8.0时,效率最佳。提取到PVC管内部后​​,在在线ICPMS测量之前,用0.5%的HNO_(3)洗脱吸附的分析物。对于细胞外液中存在的浓度低于纳克/微升浓度(即Cu,Zn和Mn)的那些元素,需要12分钟的时间分辨率才能收集足够的微量透析液以满足ICPMS仪器的灵敏度要求。值得注意的是,由于无需对PVC管的内部进行清洗和后处理,因此可以进行相对简单和清洁的操作,从而获得了用于分析Mn的5.0至510 ng L〜(-1)的极低检测限。 ICPMS分析8μL微透析液样品中的铜,锌,铅,镉,镍和钴。据我们所知,这项研究是第一个在实验室阀模式下利用PVC蠕动管作为SPE吸附剂进行在线样品处理和ICPMS测量前痕量金属预富集的研究。我们通过对认证参考物质SLEW-3(河口水)和2670a(人尿)的分析,确认了该方法的分析可靠性,并通过同时体内监测基础浓度和多种金属离子的浓度曲线,证明了该方法的适用性。活着的老鼠的大脑细胞外液。

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