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微波辅助消解后,采用离子色谱法对碘或碘化物补充大鼠的体液和组织中的总碘进行定量分析。

Total iodine quantification in fluids and tissues from iodine- or iodide-supplemented rats by ion chromatography following microwave-assisted digestion.

作者信息

Delgado Guadalupe, Muñoz-Torres Carolina, Orozco-Esquivel Teresa, Anguiano Brenda, Aceves Carmen

机构信息

1 Instituto de Neurobiología, Universidad Nacional Autónoma de México Campus Juriquilla , Querétaro, México .

出版信息

Thyroid. 2015 Mar;25(3):352-60. doi: 10.1089/thy.2014.0290.

DOI:10.1089/thy.2014.0290
PMID:25668583
Abstract

BACKGROUND

Iodine is a crucial component of thyroid hormones, and several reports have shown that iodine per se is implicated in the physiopathology of other organs.

METHODS

Innovative ion chromatography detection following a four-step temperature ramp microwave digestion in 25-50 mM nitric acid was developed to measure total iodine in biological fluids and tissue samples from female Sprague-Dawley rats supplemented with 0.05% molecular iodine (I2) or 0.05% potassium iodide (I(-)) in drinking water.

RESULTS

The reported method allows the measurement of total iodine with a limit of quantification of 13.7 μg L(-1), recoveries of 96.3-100.3%, and intra- and inter-assay variations, of 3.5% and 7.4% respectively. Analysis of biological fluids showed that after 48 hours, iodine-supplemented animals exhibited significantly higher levels of total iodine in both serum and urine compared with those supplemented with iodide. The half-life of iodine in serum and urine measured over the first 48 h showed similar patterns for both the I2 (7.89 and 7.76 hours) and I(-) (8.27 and 8.90 hours) supplements. Differential uptake patterns were observed in tissues after 6 days of supplements, with I(-) preferentially retained by thyroid, lactating mammary gland, and milk, and a slightly but significantly higher capture of I2 in pituitary, ovary, and virgin mammary gland.

CONCLUSIONS

We developed a rapid, selective, and accurate digestion method to process fluid and tissue samples that permits reproducible measurements of total iodine by ion chromatography; iodine or iodide supplement show a similar serum and urine half-life, but organ-specific uptake depends on the chemical form of the iodine supplement.

摘要

背景

碘是甲状腺激素的关键成分,多项报告表明碘本身与其他器官的生理病理学有关。

方法

开发了一种创新的离子色谱检测方法,该方法在25 - 50 mM硝酸中进行四步升温微波消解,用于测量饮用含0.05%分子碘(I2)或0.05%碘化钾(I(-))的饮用水的雌性Sprague-Dawley大鼠的生物体液和组织样本中的总碘。

结果

所报道的方法能够测量总碘,定量限为13.7 μg L(-1),回收率为96.3 - 100.3%,批内和批间变异分别为3.5%和7.4%。生物体液分析表明,48小时后,补充碘的动物血清和尿液中的总碘水平显著高于补充碘化物的动物。在最初48小时内测量的血清和尿液中碘的半衰期显示,I2(7.89和7.76小时)和I(-)(8.27和8.90小时)补充剂的模式相似。补充6天后,在组织中观察到不同的摄取模式,I(-)优先保留在甲状腺、泌乳乳腺和乳汁中,而垂体、卵巢和未孕乳腺对I2的摄取略有但显著更高。

结论

我们开发了一种快速、选择性和准确的消解方法来处理液体和组织样本,该方法允许通过离子色谱对总碘进行可重复测量;碘或碘化物补充剂显示出相似的血清和尿液半衰期,但器官特异性摄取取决于碘补充剂的化学形式。

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