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用于定量啮齿动物血清中总3,3',5-三碘-L-甲状腺原氨酸和3,3',5,5'-四碘-L-甲状腺原氨酸的超高效液相色谱-串联质谱法的开发与验证

Development and validation of an ultraperformance liquid chromatography-tandem mass spectrometry method for quantitation of total 3,3',5-triiodo-L-thyronine and 3,3',5,5'-tetraiodo-L-thyronine in rodent serum.

作者信息

Waidyanatha Suramya, Fletcher Brenda L, Fernando Reshan A, Cora Michelle C, Silinski Melanie A Rehder

机构信息

Division of the National Toxicology Program, NIEHS, P.O. Box 12233, Research Triangle Park, NC 27709.

RTI International, P.O. Box 12194, Research Triangle Park, NC 27709.

出版信息

Anal Lett. 2022;55(5):796-811. doi: 10.1080/00032719.2021.1967969. Epub 2021 Aug 27.

Abstract

Many environmental chemicals are known to disrupt thyroid function. Measurement of thyroid hormones in animal studies provides useful information to understand the effects of environmental chemicals on thyroid hormone metabolism. We report an efficient method, utilizing a protein precipitation followed by ultraperformance liquid chromatography-tandem mass spectrometry analysis, to quantitate total 3,3',5-triiodo-L-thyronine (triiodothyronine, T3) and total 3,3',5,5'-tetraiodo-L-thyronine (thyroxine, T4) in rodent serum. The use of synthetic serum for calibration standards eliminated the interferences from endogenous total T3 and T4 and allowed the experimental lower limits of quantitation (LOQ) to be set at the required concentration (T3, 20 ng/dL; T4, 0.5 μg/dL) to allow quantitation of endogenous concentrations. The method was linear (r>0.99; range 20.0-600 ng/dL T3, 0.500-15 μg/dL T4) with good assay recoveries (90.4-107%) for both analytes. Intra- and inter-day accuracy, estimated as percent relative error, were ≤ ±7.6% and intra- and inter-day precision, estimated as the relative standard deviation, were ≤ 5.3% for both analytes. The method may easily be adapted to a well-plate format thereby further improving the efficiency. Total T3 and T4 concentrations were stable in male and female rat and mouse serum when stored in the freezer (~ -70 °C) for up to 62 d with determined values within 92.8-111% of day 0 for both analytes. The method can be extended to quantitate total T3 and T4 concentrations in humans or other species with minimal optimization.

摘要

已知许多环境化学物质会干扰甲状腺功能。在动物研究中测量甲状腺激素可为了解环境化学物质对甲状腺激素代谢的影响提供有用信息。我们报告了一种高效方法,该方法先进行蛋白质沉淀,然后采用超高效液相色谱-串联质谱分析,以定量啮齿动物血清中的总3,3',5-三碘-L-甲状腺原氨酸(三碘甲状腺原氨酸,T3)和总3,3',5,5'-四碘-L-甲状腺原氨酸(甲状腺素,T4)。使用合成血清作为校准标准消除了内源性总T3和T4的干扰,并允许将实验定量下限(LOQ)设定为所需浓度(T3,20 ng/dL;T4,0.5 μg/dL),以便对内源性浓度进行定量。该方法具有线性(r>0.99;范围为20.0 - 600 ng/dL T3,0.500 - 15 μg/dL T4),两种分析物的测定回收率均良好(90.4 - 107%)。以相对误差百分比估计的日内和日间准确度,两种分析物均≤±7.6%,以相对标准偏差估计的日内和日间精密度均≤5.3%。该方法可轻松调整为微孔板形式,从而进一步提高效率。当在冷冻箱(约-70°C)中储存长达62天时,雄性和雌性大鼠及小鼠血清中的总T3和T4浓度稳定,两种分析物的测定值在第0天的92.8 - 111%范围内。该方法经过最少的优化即可扩展用于定量人类或其他物种中的总T3和T4浓度。

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