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水中生物膜活性化合物的电化学筛选。

Electrochemical screening of biomembrane-active compounds in water.

机构信息

School of Chemistry, University of Leeds, Leeds LS2 9JT, United Kingdom.

School of Chemistry, University of Leeds, Leeds LS2 9JT, United Kingdom.

出版信息

Anal Chim Acta. 2014 Feb 27;813:83-9. doi: 10.1016/j.aca.2014.01.009. Epub 2014 Jan 10.

Abstract

Interactions of biomembrane-active compounds with phospholipid monolayers on microfabricated Pt/Hg electrodes in an on-line high throughput flow system are demonstrated by recording capacitance current peak changes as rapid cyclic voltammograms (RCV). Detection limits of the compounds' effects on the layer have been estimated from the data. Compounds studied include steroids, polycyclic aromatic hydrocarbons, tricyclic antidepressants and tricyclic phenothiazines. The results show that the extent and type of interaction depends on the-(a) presence and number of aromatic rings and substituents, (b) presence and composition of side chains and, (c) molecular shape. Interaction is only indirectly related to compound hydrophobicity. For a selection of tricyclic antidepressants and tricyclic phenothiazines the detection limit in water is related to their therapeutic normal threshold. The sensing assay has been tested in the presence of humic acid as a potential interferent and in a tap water matrix. The system can be applied to the screening of putative hazardous substances and pharmaceuticals allowing for early detection thereof in the water supply. The measurements are made in real time which means that potentially toxic compounds are detected rapidly within <10 min per assay. This technology will contribute greatly to environment safety and health.

摘要

在在线高通量流动系统中,通过记录电容电流峰变化作为快速循环伏安法 (RCV),展示了生物膜活性化合物与微制造 Pt/Hg 电极上的磷脂单层之间的相互作用。从数据中估计了化合物对该层的影响的检测限。研究的化合物包括类固醇、多环芳烃、三环抗抑郁药和三环吩噻嗪。结果表明,相互作用的程度和类型取决于-(a)芳环和取代基的存在和数量,(b)侧链的存在和组成,以及(c)分子形状。相互作用仅与化合物疏水性间接相关。对于选择的三环抗抑郁药和三环吩噻嗪,在水中的检测限与其治疗正常阈值相关。该传感测定法已在腐殖酸作为潜在干扰物和自来水中基质存在的情况下进行了测试。该系统可用于筛选潜在危险物质和药物,从而能够在供水系统中尽早检测到这些物质。测量是实时进行的,这意味着每个测定在<10 分钟内即可快速检测到潜在的有毒化合物。这项技术将极大地促进环境安全和健康。

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