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一种经过验证的用于细胞甲状腺激素代谢的液相色谱-串联质谱法:PCCL3甲状腺细胞对单碘化甲状腺激素代谢物的摄取和周转。

A validated LC-MS/MS method for cellular thyroid hormone metabolism: Uptake and turnover of mono-iodinated thyroid hormone metabolites by PCCL3 thyrocytes.

作者信息

Richards Keith H, Schanze Nancy, Monk Ray, Rijntjes Eddy, Rathmann Daniel, Köhrle Josef

机构信息

Charité-Universitätsmedizin Berlin, Institut für Experimentelle Endokrinologie, Augustenburger Platz 1, Berlin, Germany.

Chromicent GmbH, Johann-Hittorf-Strasse 8, Berlin, Germany.

出版信息

PLoS One. 2017 Aug 24;12(8):e0183482. doi: 10.1371/journal.pone.0183482. eCollection 2017.

Abstract

Tyrosine and phenolic ring de-iodination of thyroid hormones (TH) is crucial for regulating their physiological activity. Furthermore, reactions such as de-carboxylation to thyronamines (TAM) and de-amination to thyroacetic acids (TAc) produce TH metabolites (THM) with distinct biological properties. This needs to be considered when studying effects of TH and THM. The accurate and precise quantitative analysis of TH and THM in cell culture supernatants and cell lysates are key procedures required for studying the in vitro metabolism of TH. We report here the development of a liquid-liquid extraction/isotope dilution-liquid chromatography-electrospray tandem mass spectrometry (LC-MS/MS) method for the quantification of 9 thyronines (TN) and 6 TAM in human hepatocellular carcinoma Hep G2 cell lysate extracts. In addition, we adapted the method to quantify TH, TAM and TAc, in cell lysates of FBS-depleted rat thyroid epithelium PCCL3 cells. The methods for both cell lines were validated by rigorous assessment of linearity, limits of quantification and detection (LLOQ and LLOD respectively), intra- and inter-day accuracy, precision, process efficiency (PE), matrix effect (ME) and relative recovery (RE). Calibration curves covering 11 concentrations (based on 400 μl of lysate) were linear in the range 0.016-50 nM and 0.010-50 nM for Hep G2 and PCCL3 cells respectively. The lower limits of quantification were in the range 0.031 to 1 nM. We applied the PCCL3 version of the LC-MS/MS method to the analysis of lysed cell extracts from PCCL3 cells that had been incubated with 3-iodo-L-thyronine (T1), 3-iodothyronamine (3-T1AM) and 3-iodothyroacetic acid (3-T1Ac). Over the course of 30 minutes incubation 3-T1AM was de-iodinated to 4-[4-(2-aminoethylphenoxy)]phenol (thyronamine, T0AM) and de-aminated to 3-T1Ac respectively, whilst T1 underwent de-iodination to T0. This data indicates avid metabolism of these mono-iodinated compounds and the utility of LC-MS/MS to quantify such cellular metabolism.

摘要

甲状腺激素(TH)的酪氨酸和酚环脱碘对于调节其生理活性至关重要。此外,诸如脱羧生成甲状腺胺(TAM)和脱氨基生成甲状腺乙酸(TAc)等反应会产生具有独特生物学特性的TH代谢产物(THM)。在研究TH和THM的作用时需要考虑这一点。对细胞培养上清液和细胞裂解物中的TH和THM进行准确、精确的定量分析是研究TH体外代谢所需的关键步骤。我们在此报告了一种液液萃取/同位素稀释-液相色谱-电喷雾串联质谱(LC-MS/MS)方法的开发,用于定量人肝癌Hep G2细胞裂解物提取物中的9种甲状腺原氨酸(TN)和6种TAM。此外,我们对该方法进行了调整,以定量无血清大鼠甲状腺上皮PCCL3细胞裂解物中的TH、TAM和TAc。通过严格评估线性、定量限和检测限(分别为LLOQ和LLO D)、日内和日间准确性、精密度、过程效率(PE)、基质效应(ME)和相对回收率(RE),对两种细胞系的方法进行了验证。覆盖11个浓度(基于400μl裂解物)的校准曲线在Hep G2细胞和PCCL3细胞中分别在0.016 - 50 nM和0.010 - 50 nM范围内呈线性。定量下限在0.031至1 nM范围内。我们将LC-MS/MS方法的PCCL3版本应用于对用3-碘-L-甲状腺原氨酸(T1)、3-碘甲状腺胺(3-T1AM)和3-碘甲状腺乙酸(3-T1Ac)孵育的PCCL3细胞裂解细胞提取物的分析。在30分钟的孵育过程中,3-T1AM分别脱碘生成4-[4-(2-氨基乙基苯氧基)]苯酚(甲状腺胺,T0AM)并脱氨基生成3-T1Ac,而T1则脱碘生成T0。该数据表明这些单碘化化合物的活跃代谢以及LC-MS/MS用于定量此类细胞代谢的效用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b72a/5570372/594c1dac1d89/pone.0183482.g001.jpg

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