首页> 美国卫生研究院文献>The Journal of Clinical Investigation >Inhibition of intrapituitary thyroxine to 3.5.3-triiodothyronine conversion prevents the acute suppression of thyrotropin release by thyroxine in hypothyroid rats.
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Inhibition of intrapituitary thyroxine to 3.5.3-triiodothyronine conversion prevents the acute suppression of thyrotropin release by thyroxine in hypothyroid rats.

机译:抑制3.5.3-三碘甲状腺素转化为垂体甲状腺素可防止甲状腺功能减退大鼠甲状腺素释放促甲状腺素的急性抑制。

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摘要

Iopanoic acid has been shown to block thyroxine (T4)-5'-monodeiodination in rat anterior pituitary in vitro. To test the hypothesis that the acute decrease in thyrotropin (TSH) after infusion of T4 into hypothyroid rats requires intrapituitary T4 to 3,5,3'-triiodothyroxine (T3) conversion, the effect of iopanoic acid treatment on the generation of nuclear T3 from intrapituitary conversion and the response to TSH were compared in control and iopanoic acid-treated animals. 5 mg/100 g body weight iopanoic acid given 24, 16, and 1.5 h before administration of 125I-T4 reduced the quantity of pituitary nuclear 125I-T3 from local (intrapituitary) T4 to T3 conversion by 60-100%. In association with inhibition of intrapituitary T4 to T3 conversion, there was an increase in the binding of 125I-T4 to the nuclear receptor of the pituitary but the total iodothyronine content of the nuclei was still less than half of the nuclear iodothyronine in control animals. Iopanoic acid did not affect the nuclear/plasma ratio of injected 131I-T3 in the same animals, but did appear to impair 131I-T3 clearance or reduce its distribution volume. Treatment with iopanoic acid did not reduce the quantity of nuclear 125I-T3 in the liver, kidney, or heart of the same animals more than expected from the changes in serum 125I-T3. In control hypo-thyroid animals pretreated with iopanoic acid, the mean TSH was not significantly decreased from the initial value by T4 injection. Iopanoic acid pretreatment did not interfere with the acute TSH response of chronically hypothyroid rats to 70 ng of T3/100 g body weight. These results establish that intrapituitary generations of T3 from T4 is required for the acute decrease in TSH which occurs after T4 infusion. The data also are consistent with the content that it is nuclear binding of the T3 generated from T4 which initiates the inhibition of TSH release.
机译:碘酸已显示在大鼠垂体前叶在体外阻断甲状腺素(T4)-5'-单碘化。为了检验假说,将T4注入甲状腺功能减退大鼠后,促甲状腺激素(TSH)急剧下降,需要将垂体T4转化为3,5,3'-三碘甲状腺素(T3),碘酸处理对T4产生核T3的影响在对照和碘酸处理的动物中比较了垂体转化和对TSH的反应。在服用125I-T4之前的24、16和1.5小时给予5 mg / 100 g体重的碘酸,将垂体核125I-T3的量从局部(腹膜内)T4转化为T3减少了60-100%。与抑制垂体T4向T3转化有关,125I-T4与垂体核受体的结合增加,但对照动物核的总碘甲状腺素含量仍不到核碘甲状腺素的一半。碘酸不会影响相同动物中注射的131I-T3的核/血浆比例,但确实会损害131I-T3的清除或减少其分布体积。用碘酸处理不会降低相同动物的肝脏,肾脏或心脏中核125I-T3的含量,这要比血清125I-T3的变化所预期的要多。在使用碘酸预处理的甲状腺功能减退的对照动物中,平均TSH值并未因T4注射的初始值而明显降低。碘酸预处理不会干扰慢性甲状腺功能减退大鼠对70 ng T3 / 100 g体重的急性TSH反应。这些结果表明,T4注入后发生的TSH急剧下降需要从T4产生T3的垂体生成。该数据还与从T4产生的T3的核结合引发了TSH释放的抑制的内容是一致的。

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