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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Simultaneous assay of isotopic enrichment and concentration of guanidinoacetate and creatine by gas chromatography-mass spectrometry
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Simultaneous assay of isotopic enrichment and concentration of guanidinoacetate and creatine by gas chromatography-mass spectrometry

机译:气相色谱-质谱法同时测定胍基乙酸盐和肌酸的同位素富集和浓度

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摘要

A gas chromatography-mass spectrometry (GC-MS) method for the simultaneous measurement of isotopic enrichment and concentration of guanidinoacetate (GAA) and creatine in plasma sample for kinetic studies is reported. The method, based on preparation of the bis(trifluoromethyl)pyrimidine methyl ester derivatives of GAA and creatine, is robust and sensitive. The lowest measurable m_1 and m_3 enrichment for GAA and creatine, respectively, was 0.3%. The calibration curves for measurements of concentration were linear over ranges of 0.5 to 250 μM GAA and 2 to 500 μM for creatine. The method was reliable for inter- and intraassay precision, accuracy, and linearity. The technique was applied in a healthy adult to determine the in vivo fractional synthesis rate of creatine using primed-constant rate infusion of [1-~(13)C]glycine. It was found that isotopic enrichment of GAA reached a plateau by 30 min of infusion of [1-~(13)C]glycine, indicating either a small pool size or a rapid turnover rate (or both) of GAA. In contrast, the tracer appearance in creatine was slow (slope = 0.00097), suggesting a large pool size and a slow rate of synthesis of creatine. This method can be used to estimate the rate of synthesis of creatine in vivo in human and animal studies.
机译:气相色谱-质谱法(GC-MS)用于同时测定血浆样品中的胍基乙酸盐(GAA)和肌酸的同位素富集和浓度,用于动力学研究。该方法基于GAA和肌酸的双(三氟甲基)嘧啶甲酯衍生物的制备,既可靠又灵敏。 GAA和肌酸的最低可测m_1和m_3富集分别为0.3%。浓度测量的校准曲线在0.5至250μMGAA和2至500μM肌酸范围内呈线性。该方法在批内和批内准确性,准确性和线性度方面都是可靠的。该技术已应用于健康成年人中,通过使用[1-〜(13)C]甘氨酸的灌注恒定速率输注来确定肌酸的体内分数合成速率。发现通过注入[1-〜(13)C]甘氨酸30分钟,GAA的同位素富集达到了平稳,表明GAA的池大小较小或周转率很高(或两者都有)。相反,示踪剂在肌酸中的出现较慢(斜率= 0.00097),表明较大的池大小和较慢的肌酸合成速率。在人和动物研究中,该方法可用于估计体内肌酸的合成速率。

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