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采用安培型一氧化氮传感器和可溶性有机硒催化剂试剂的生物样品中 S-亚硝酰硫醇物种的流动注射测量。

Flow injection measurements of S-nitrosothiols species in biological samples using amperometric nitric oxide sensor and soluble organoselenium catalyst reagent.

机构信息

Department of Chemistry, University of Michigan, Ann Arbor, 48109-1055, USA.

出版信息

Anal Bioanal Chem. 2011 May;400(4):1125-35. doi: 10.1007/s00216-011-4840-7. Epub 2011 Mar 18.

Abstract

A novel flow injection analysis (FIA) system suitable for measurement of S-nitrosothiols (RSNOs) in blood plasma is described. In the proposed (FIA) system, samples and standards containing RSNO species are injected into a buffer carrier stream that is mixed with the reagent stream containing 3,3'-dipropionicdiselenide (SeDPA) and glutathione (GSH). SeDPA has been shown previously to catalytically decompose RSNOs in the presence of a reducing agent, such as GSH, to produce nitric oxide (NO). The liberated NO is then detected downstream by an amperometric NO sensor. This sensor is prepared using an electropolymerized m-phenylenediamine (m-PD)/resorcinol and Nafion composite films at the surface of a platinum electrode. Using optimized flow rates and reagent concentrations, detection of various RSNOs at levels in the range of 0.25-20 μM is possible. For plasma samples, detection of background sensor interference levels within the samples must first be carried out using an identical FIA arrangement, but without the added SeDPA and GSH reagents. Subtraction of this background sensor current response allows good analytical recovery of RSNOs spiked into animal plasma samples, with recoveries in the range of 90.4-101.0%.

摘要

描述了一种适用于测量血浆中 S-亚硝基硫醇 (RSNO) 的新型流动注射分析 (FIA) 系统。在所提出的 (FIA) 系统中,含有 RSNO 物种的样品和标准品被注入到含有 3,3'-二丙基二硒化物 (SeDPA) 和谷胱甘肽 (GSH) 的试剂流中。以前已经表明,SeDPA 在还原剂(如 GSH)存在下可以催化 RSNO 的分解,生成一氧化氮 (NO)。然后,在下游通过安培型 NO 传感器检测释放的 NO。该传感器是在铂电极表面使用电聚合的 m-苯二胺 (m-PD)/间苯二酚和 Nafion 复合膜制备的。使用优化的流速和试剂浓度,可以检测到 0.25-20 μM 范围内的各种 RSNO。对于血浆样品,必须首先使用相同的 FIA 装置检测样品中的背景传感器干扰水平,但不添加额外的 SeDPA 和 GSH 试剂。减去此背景传感器电流响应可以很好地分析回收添加到动物血浆样品中的 RSNO,回收率在 90.4-101.0%范围内。

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