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Influence of deproteinizing acids in erythrocytic reduced glutathione quantification by HPLC-UV

机译:HPLC-UV对脱蛋白酸对红细胞还原型谷胱甘肽定量的影响

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Large differences in reduced glutathione (GSH) levels have been found in different investigations, also in healthy people. GSH oxidation in vitro has been associated with sample acidification in the presence of oxihemoglobin. In this work, the influence of different acids on GSH determination utilizing HPLC with UV detection was evaluated. The results showed that metaphosphoric acid and sulfosalicylic acid were inadequate for analysis, because metaphosphoric acid showed to be inefficient for deproteinization and with sulfosalicylic acid loss of GSH was observed. Trichloroacetic acid did not effect GSH quantification, since the deproteinized form was immediately derivatized with 5, 5´-dithio-bis (2-nitrobenzoic) acid. Methods with TCA deproteinization presented linear results from 0.5 to 3.0 mM. The correlation coefficient between aqueous curves and GSH spiked RBC exceeded 0.99. Precision calculations showed CV lower than 10% and bias within ± 10% for concentrations of 0.5; 1.5 and 3.0 mM GSH. The recovery was higher than 94%. Moreover, GSH blood concentrations were independent of hemoglobin concentrations.
机译:谷胱甘肽(GSH)含量降低的差异也很大,在不同的研究中,也发现在健康人群中。在存在氧合血红蛋白的情况下,体外GSH氧化与样品酸化有关。在这项工作中,评估了不同酸对使用HPLC和UV检测的GSH测定的影响。结果表明,偏磷酸和磺基水杨酸不足以进行分析,因为偏磷酸显示去蛋白效率低下,并且观察到GSH的磺基水杨酸损失。三氯乙酸不影响GSH的定量,因为脱蛋白形式立即用5、5′-二硫代双(2-硝基苯甲酸)酸衍生化。 TCA脱蛋白方法的线性结果从0.5到3.0 mM。含水曲线与GSH加标的RBC之间的相关系数超过0.99。精密计算表明,浓度为0.5时CV低于10%,偏差在±10%以内; 1.5和3.0 mM GSH。回收率高于94%。此外,GSH血液浓度与血红蛋白浓度无关。

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