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Determination of Six Thyroid Hormones in the Brain and Thyroid Gland Using Isotope-Dilution Liquid Chromatography/Tandem Mass Spectrometry

机译:同位素稀释液相色谱/串联质谱法测定脑和甲状腺中的六种甲状腺激素

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Thyroid hormones (THs) play critical roles in the regulation of growth and development, including brain development, in both humans and animals. Until recently, TH levels were assayed with measurements in serum, using immunoassay (IA)-based methods. IA methods are sensitive but are compromised by the lack of adequate specificity. Furthermore, measurements of TH levels in blood do not necessarily reflect the levels and profiles found in critical organs such as the brain. Measurement of TH levels in the brain is critical for studies that assess the effects of environmental contaminants on TH homeostasis. In this study, we developed a selective and sensitive method for the analysis of six THs, L-thyroxine (T_(4)), 3,3',5-triiodo-L-thyronine (T_(3)), 3,3',5'-triiodo-L-thyronine (rT_(3)), 3,5-diiodo-L-thyronine (3,5-T_(2)), 3,3'-diiodo-L-thyronine (3,3'-T_(2)), and 3-iodo-L-thyronine (3-T_(1)), in the brain and thyroid gland (TG) using isotope ([~(13)C]T_(4))-dilution liquid chromatography (LC)/tandem mass spectrometry (MS/MS). Proteins in the (rat) brain and TG were digested by pronase, and THs were extracted with a solid-phase extraction method and analyzed by LC/MS/MS. The instrumental calibration range for each TH ranged from 0.5 to 200 ng/mL and showed excellent linearity (r > 0.9995). The instrumental detection limits for THs were in the range of 7.5-13.5 pg, in positive ion mode, and 13.5-16.5 pg, in negative ion mode. The optimized procedural recoveries for THs (except for 3-T_(1)), spiked into a pig-brain matrix, were between 97.6percent and 109percent, with a coefficient of variation (CV) of 1.2-8.2percent, for the brain, and between 96.4percent and 101percent, with a CV of 1.8-8.6percent, for the TG. Concentrations of THs in the brain and TG of the five rats were 2.20-3.65 ng/g T_(4), 1.56-2.20 ng/g T_(3), and below the limit of detection (
机译:甲状腺激素(THs)在人类和动物的生长发育(包括大脑发育)的调节中起着关键作用。直到最近,使用基于免疫测定(IA)的方法在血清中测量TH水平。 IA方法很敏感,但由于缺乏足够的特异性而受到损害。此外,血液中TH水平的测量不一定能反映出大脑等重要器官的水平和分布。大脑中TH水平的测量对于评估环境污染物对TH稳态的影响至关重要。在这项研究中,我们开发了一种选择性灵敏的方法来分析六个TH,L-甲状腺素(T_(4)),3,3',5-三碘-L-甲状腺素(T_(3)),3,3 ',5'-三碘-L-甲状腺素(rT_(3)),3,5-二碘-L-甲状腺素(3,5-T_(2)),3,3'-二碘-L-甲状腺素(3,使用同位素([〜(13)C] T_(4))在大脑和甲状腺(TG)中的3'-T_(2))和3-碘-L-甲状腺素(3-T_(1)) -稀释液相色谱法(LC)/串联质谱法(MS / MS)。 (大鼠)大脑和TG中的蛋白质通过链霉蛋白酶进行消化,THs采用固相提取法进行提取,并通过LC / MS / MS进行分析。每个TH的仪器校准范围为0.5至200 ng / mL,并显示出极好的线性(r> 0.9995)。 TH的仪器检出限在正离子模式下为7.5-13.5 pg,在负离子模式下为13.5-16.5 pg。刺入猪脑基质的THs(3-T_(1)除外)的最佳程序回收率在97.6%至109%之间,对大脑的变异系数(CV)为1.2-8.2% TG的CV为96.4%至101%,CV为1.8-8.6%。五只大鼠的大脑和TG中的TH浓度分别为2.20-3.65 ng / g T_(4),1.56-2.20 ng / g T_(3),并且低于其他TH的检测极限(

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