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碘补充对缺碘新生大鼠脑内碘状态及5'-脱碘酶活性的影响。

Effect of iodine supplement on iodine status and 5'-deiodinase activity in the brain of neonatal rats with iodine deficiency.

作者信息

Liu Nianqing, Zuo Aijun, Liang Dongchun, Zhang Zhiyong, Guo Gang, Chai Zhifang

机构信息

Laboratory of Nuclear Analytical Techniques, Institute of High Energy Physics, Chinese Academy of Sciences, Beijing 100049 China.

出版信息

Biol Trace Elem Res. 2006 Winter;114(1-3):207-15. doi: 10.1385/BTER:114:1:207.

Abstract

The weanling Wistar rats of iodine deficiency were divided into three groups for supplementation of different levels of iodine (iodine-excessive [IE], iodine-adequate [IA], and iodine-deficient [ID]), with a control group (C). The iodine content in the thyroid was determined by epithermal neutron activation analysis. The activities of 5'-deiodinase and 5-deiodinase in the brains were assayed by determining the conversion ratios of T4 to T3 and rT3, respectively. The thyroid hormones levels in serum were also tested. The results indicated that the ID group had a goiter containing a small amount of iodine, but the IE group had a slightly swollen thyroid with rich iodine; the concentration of iodine per unit mass of thyroid was lower in group IE than in groups IA and C. The highest 5'-deiodinase and lowest 5-deiodinase activities in group ID and the lowest 5'-deiodinase activity in group IE were found. The iodine deficiency or excess resulted in a compensated hypothyroid state. The results suggest that the iodine status and the deiodinases activities would become normal for the rats of iodine deficiency if adequate iodine is supplemented soon after birth. Meanwhile, it is also critical to avoid excessive intake of iodine to reduce the risk for overcorrecting.

摘要

将断奶期缺碘的Wistar大鼠分为三组,分别补充不同水平的碘(碘过量[IE]、碘充足[IA]和碘缺乏[ID]),并设对照组(C)。通过超热中子活化分析法测定甲状腺中的碘含量。分别通过测定T4向T3和反T3的转化率来检测脑中5'-脱碘酶和5-脱碘酶的活性。还检测了血清中的甲状腺激素水平。结果表明,ID组有一个含少量碘的甲状腺肿,但IE组甲状腺略有肿大且碘含量丰富;IE组每单位质量甲状腺中的碘浓度低于IA组和C组。发现ID组5'-脱碘酶活性最高,5-脱碘酶活性最低,IE组5'-脱碘酶活性最低。碘缺乏或过量导致代偿性甲状腺功能减退状态。结果表明,如果在出生后不久补充足够的碘,碘缺乏大鼠的碘状态和脱碘酶活性将恢复正常。同时,避免碘摄入过量以降低过度纠正的风险也至关重要。

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