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首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >Determination of S-nitrosoglutathione and other nitrosothiols by p-hydroxymercurybenzoate derivatization and reverse phase chromatography coupled with chemical vapor generation atomic fluorescence detection
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Determination of S-nitrosoglutathione and other nitrosothiols by p-hydroxymercurybenzoate derivatization and reverse phase chromatography coupled with chemical vapor generation atomic fluorescence detection

机译:对羟基苯甲酸汞酯衍生化-反相色谱-化学气相产生原子荧光检测法测定S-亚硝基谷胱甘肽和其他亚硝基硫醇

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摘要

S-Nitrosoglutathione (GSNO) reacts with the organic mercurial probe, p-hydroxymercury benzoate (PHMB, HO-Hg-(C6H4)-COO-Na+) giving the complex GS-Hg(C6H4)COOH(GS-PHMB). This reaction has been studied by UV measurements at 334nm also in the presence of ascorbic acid and the product of reaction, the GS-PHMB complex, characterized by Electrospray Ionization Mass Spectrometry (ESI-MS) and by Reversed Phase Chromatography (RPLC) Coupled on-line and sequentially with a UV-visible diode array detector (DAD) followed by a cold vapor generation atomic fluorescence spectrometer (CVGAFS). The Simultaneous presence of PHMB and ascorbate produced a synergistic effect on GSNO decomposition rate that can be observed only above a given concentration threshold of ascorbate (ascorbate/GSNO molar ratio >= 180). The results indicated that the formation of GS-PHMB, both in the presence and the absence of ascorbic acid, does not involve the formation of free thiolic species but it takes place through a More complex mechanism. The PHMB derivatives of GSH and GSNO obtained by the present method were found to be identical by ESI-MS. GSSG did not interfere because it was not reduced and derivatized to GS-PHMB. Once complexed by the alkylating agent N-ethylmaleimide (NEM), GSH did not interfere with the derivatization reaction. This ensured a good selectivity of the developed PHMB derivatization system for RSNO determination. Thus, we have optimized the operating conditions for the selective reaction of PHMB with GSNO and other nitrosothiols (RSNOs) in order to determinate RSNOs in human plasma. LODc for RSNOs in plasma ultrafiltrate was 30 nM (injected concentration, 50 mu L loop), the DLR ranged between 0.08 and 50 mu M and the CV% was 6.5% at 300 nM concentration level. Reduced and oxidized thiols spiked to plasma did not interfere with the measurement of RSNOs. We found that the sampling procedure was critical for the recovery of endogenous and spiked RSNOs. The ultrafiltrate samples of plasma of 8 healthy humans contained 1460+/-310 CysNO, 1000+/-1330 nM HCysNO and 320+/-60 nM GSNO if blood was sampled in a mixture NEM/ethylendiaminotetracetic acid (EDTA)/serine-borate complex (SBC), where serine-borate complex is a potent inhibitor of gamma-glutamyltransferase, an enzyme involved in the conversion of GSNO into CysGlyNO. In the absence of SBC during the sampling of blood GSNO concentration found in the ultrafiltrate was lower (at level of the determination limit in plasma ultrafiltrate, i.e. 75 nM) and the peak of CysGlyNO appeared, which corresponded to a concentration of 200+/-60 nM (N = 4 blood samples). (C) 2008 Elsevier B.V. All rights reserved.
机译:S-亚硝基谷胱甘肽(GSNO)与有机汞探针对羟基苯甲酸对羟基汞(PHMB,HO-Hg-(C6H4)-COO-Na +)反应,得到GS-Hg(C6H4)COOH(GS-PHMB)络合物。还通过在抗坏血酸和反应产物GS-PHMB络合物的存在下于334nm处进行UV测量来研究该反应,该化合物的特征在于电喷雾电离质谱(ESI-MS)和反相色谱(RPLC)耦合在在线排列并依次用紫外线可见二极管阵列检测器(DAD)和冷蒸气发生原子荧光光谱仪(CVGAFS)进行。 PHMB和抗坏血酸的同时存在对GSNO分解速率产生协同作用,只有在给定的抗坏血酸盐浓度阈值以上(抗坏血酸盐/ GSNO摩尔比> = 180)才能观察到协同作用。结果表明,在存在和不存在抗坏血酸的情况下,GS-PHMB的形成均不涉及游离巯基物质的形成,而是通过更复杂的机制进行的。通过ESI-MS发现通过本方法获得的GSH和GSNO的PHMB衍生物是相同的。 GSSG没有干扰,因为它没有还原并衍生为GS-PHMB。一旦与烷基化剂N-乙基马来酰亚胺(NEM)络合,GSH就不会干扰衍生化反应。这确保了用于RSNO测定的已开发PHMB衍生化系统具有良好的选择性。因此,为了确定人血浆中的RSNO,我们优化了PHMB与GSNO和其他亚硝基硫醇(RSNO)选择性反应的操作条件。血浆超滤液中RSNO的LODc为30 nM(注射浓度,50μL环),DLR在0.08至50μM之间,在300 nM浓度水平下CV%为6.5%。加标到血浆中的还原和氧化的硫醇不会干扰RSNO的测量。我们发现,采样程序对于回收内源性和加标的RSNO至关重要。如果在NEM /乙基内氨基四乙酸(EDTA)/丝氨酸硼酸盐的混合物中采集血液,则8位健康人血浆的超滤液样品包含1460 +/- 310 CysNO,1000 +/- 1330 nM HCysNO和320 +/- 60 nM GSNO复合物(SBC),其中丝氨酸-硼酸盐复合物是有效的γ-谷氨酰转移酶抑制剂,该酶涉及GSNO转化为CysGlyNO。在血液采样期间没有SBC的情况下,超滤液中的GSNO浓度较低(处于血浆超滤液测定极限的水平,即75 nM),并且出现了CysGlyNO峰,相当于200 +/- 60 nM(N = 4个血液样本)。 (C)2008 Elsevier B.V.保留所有权利。

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