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呋塞米对小鼠甲状腺中放射性碘-131潴留的影响。

Effect of furosemide on radioiodine-131 retention in mice thyroid gland.

作者信息

Matovic Milovan D, Jankovic Slobodan M, Jeremic Marija, Novakovic Milan, Milosev Milorad, Vlajkovic Marina

机构信息

Nuclear Medicine Department, Clinical Centre Kragujevac, Ul. Zmaj Jovina 30, 34000, Kragujevac, Serbia.

出版信息

Hell J Nucl Med. 2009 May-Aug;12(2):129-31.

Abstract

Retention of iodine in the thyroid gland is the result of renal excretion and transport of iodine to thyroid cells. Both processes are affected by furosemide. The aim of our study was to test whether furosemide influenced radioiodine-131 ((131)I) retention in the thyroid gland of living mice. Our methods were as follows: After 15 days of low-iodine diet, 19 Swiss mice received an intra-peritoneal injection of 0.37+/-0.03 MBq of (131)I. Thereafter, 11 mice were treated with intraperitoneal injections of furosemide (0.3 mg/kg, every 8 h, for 72 h), Group A and 8 mice served as controls, Group B. Seventy-two hours after (131)I administration, the mice were anaesthetized, their thyroids were carefully extirpated, and their radioactivity was measured by a gamma counter. Our results showed that the mean value of (131)I retention after 72 h was 63.09% in Group A and 82.25% in Group B. The difference between these two groups was significant (T=3.0919, P=0.0033). In conclusion, furosemide after the administration of (131)I, decreases retention of (131)I in the thyroid gland in mice. The well known increase of iodine renal excretion by furosemide and consequently decrease of iodine blood pool may be the reason for this decreased (131)I retention by the thyroid gland.

摘要

碘在甲状腺中的潴留是肾脏排泄碘并将其转运至甲状腺细胞的结果。这两个过程均受呋塞米影响。我们研究的目的是测试呋塞米是否会影响活体小鼠甲状腺中放射性碘-131(¹³¹I)的潴留。我们的方法如下:在低碘饮食15天后,19只瑞士小鼠腹腔注射0.37±0.03 MBq的¹³¹I。此后,11只小鼠接受腹腔注射呋塞米(0.3 mg/kg,每8小时一次,共72小时),A组;8只小鼠作为对照组,B组。给予¹³¹I 72小时后,将小鼠麻醉,小心摘除其甲状腺,并用γ计数器测量其放射性。我们的结果显示,72小时后¹³¹I潴留的平均值在A组为63.09%,在B组为82.25%。两组之间的差异具有显著性(T = 3.0919,P = 0.0033)。总之,在给予¹³¹I后,呋塞米会降低小鼠甲状腺中¹³¹I的潴留。呋塞米众所周知的增加碘肾排泄并因此减少碘血池的作用可能是甲状腺¹³¹I潴留减少的原因。

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