Rastogi L, Dash K, Arunachalam J
National Centre for Compositional Characterization of Materials (CCCM), Bhabha Atomic Research Centre, ECIL Post, Hyderabad 500062, India.
J Pharm Anal. 2013 Jun;3(3):180-186. doi: 10.1016/j.jpha.2013.02.004. Epub 2013 Mar 5.
The quantitative analysis of glutathione (GSH) is important in different fields like medicine, biology, and biotechnology. Accurate quantitative measurements of this analyte have been hampered by the lack of well characterized reference standards. The proposed procedure is intended to provide an accurate and definitive method for the quantitation of GSH for reference measurements. Measurement of the stoichiometrically existing sulfur content in purified GSH offers an approach for its quantitation and calibration through an appropriate characterized reference material (CRM) for sulfur would provide a methodology for the certification of GSH quantity, that is traceable to SI (International system of units). The inductively coupled plasma optical emission spectrometry (ICP-OES) approach negates the need for any sample digestion. The sulfur content of the purified GSH is quantitatively converted into sulfate ions by microwave-assisted UV digestion in the presence of hydrogen peroxide prior to ion chromatography (IC) measurements. The measurement of sulfur by ICP-OES and IC (as sulfate) using the "high performance" methodology could be useful for characterizing primary calibration standards and certified reference materials with low uncertainties. The relative expanded uncertainties (% U) expressed at 95% confidence interval for ICP-OES analyses varied from 0.1% to 0.3%, while in the case of IC, they were between 0.2% and 1.2%. The described methods are more suitable for characterizing primary calibration standards and certifying reference materials of GSH, than for routine measurements.
谷胱甘肽(GSH)的定量分析在医学、生物学和生物技术等不同领域都很重要。由于缺乏充分表征的参考标准品,对该分析物进行准确的定量测量受到了阻碍。所提出的程序旨在提供一种准确且确定的方法来定量GSH,用于参考测量。测量纯化的GSH中化学计量存在的硫含量提供了一种定量和校准的方法,通过适当表征的硫参考物质(CRM)将为GSH含量的认证提供一种可追溯到国际单位制(SI)的方法。电感耦合等离子体发射光谱法(ICP - OES)无需对任何样品进行消解。在离子色谱(IC)测量之前,通过在过氧化氢存在下的微波辅助紫外消解将纯化的GSH中的硫含量定量转化为硫酸根离子。使用“高性能”方法通过ICP - OES和IC(作为硫酸盐)测量硫对于表征具有低不确定度的一级校准标准品和有证参考物质可能是有用的。在95%置信区间下,ICP - OES分析的相对扩展不确定度(%U)在0.1%至0.3%之间变化,而对于IC,它们在0.2%至1.2%之间。所描述的方法更适合于表征GSH的一级校准标准品和认证参考物质,而不是用于常规测量。