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优化便携式微分析系统以减少与唾液中铅(Pb)生物监测相关的蛋白质对电极的污染。

Optimization of a portable microanalytical system to reduce electrode fouling from proteins associated with biomonitoring of lead (Pb) in saliva.

作者信息

Yantasee Wassana, Timchalk Charles, Weitz Karl K, Moore Dean A, Lin Yuehe

机构信息

Pacific Northwest National Laboratory, 902 Battelle Blvd, P.O. Box 999, Richland, WA 99352, USA.

出版信息

Talanta. 2005 Sep 15;67(3):617-24. doi: 10.1016/j.talanta.2005.03.039. Epub 2005 Jun 6.

Abstract

There is a need to develop reliable portable analytical systems for on-site and real-time biomonitoring of lead (Pb) from both occupational and environmental exposures. Saliva is an appealing matrix since it is easily obtainable, and therefore a potential substitute for blood due to existing reasonably good correlation between Pb levels in blood and saliva. The microanalytical system is based on flow-injection/stripping voltammetry with a wall-jet (flow-onto) microelectrochemical cell. Samples that contain as little as 1% saliva can cause electrode fouling, resulting in significantly reduced responsiveness and irreproducible quantitations. In addition, incomplete Pb release from salivary protein can also yield a lower Pb response than expected. This paper evaluates the extent of in vitro Pb-protein binding and the optimal pretreatment for releasing Pb from the saliva samples. Even in 50% by volume of rat saliva, the electrode fouling was not observed, due to the appropriate sample pretreatment and the constant flow of the sample and acidic carrier that prevented passivation by the protein. The system offered a linear response over a low Pb range of 1-10ppb, low detection limit of 1ppb, excellent reproducibility, and reliability. It also yielded the same Pb concentrations in unknown samples as did the ICP-MS. These encouraging results suggest that the microanalytical system represents an important analytical advancement for real-time non-invasive biomonitoring of Pb.

摘要

有必要开发可靠的便携式分析系统,用于对职业和环境暴露中的铅(Pb)进行现场实时生物监测。唾液是一种有吸引力的基质,因为它易于获取,而且由于血液和唾液中的铅水平之间存在合理的良好相关性,因此有可能替代血液。该微分析系统基于带有壁流(流到)微电化学池的流动注射/溶出伏安法。含有低至1%唾液的样品会导致电极污染,从而导致响应性显著降低和定量结果不可重复。此外,唾液蛋白中铅的不完全释放也可能导致铅响应低于预期。本文评估了体外铅-蛋白质结合的程度以及从唾液样品中释放铅的最佳预处理方法。即使在50%体积的大鼠唾液中,由于适当的样品预处理以及样品和酸性载体的恒定流动防止了蛋白质钝化,也未观察到电极污染。该系统在1-10 ppb的低铅范围内具有线性响应,检测限低至1 ppb,具有出色的重现性和可靠性。它在未知样品中得到的铅浓度与电感耦合等离子体质谱法(ICP-MS)得到的相同。这些令人鼓舞的结果表明,该微分析系统代表了铅实时无创生物监测的一项重要分析进展。

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