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Administration of 35-diiodothyronine (35-T2) causes central hypothyroidism and stimulates thyroid-sensitive tissues

机译:35-二碘甲甲状腺氨酸(35-T2)的给药引起中枢性甲状腺功能减退并刺激甲状腺敏感组织

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摘要

In general, 3,5-diiodothyronine (3,5-T2) increases the resting metabolic rate and oxygen consumption, exerting short-term beneficial metabolic effects on rats subjected to a high-fat diet. Our aim was to evaluate the effects of chronic 3,5-T2 administration on the hypothalamus–pituitary–thyroid axis, body mass gain, adipose tissue mass, and body oxygen consumption in Wistar rats from 3 to 6 months of age. The rats were treated daily with 3,5-T2 (25, 50, or 75 μg/100 g body weight, s.c.) for 90 days between the ages of 3 and 6 months. The administration of 3,5-T2 suppressed thyroid function, reducing not only thyroid iodide uptake but also thyroperoxidase, NADPH oxidase 4 (NOX4), and thyroid type 1 iodothyronine deiodinase (D1 (DIO1)) activities and expression levels, whereas the expression of the TSH receptor and dual oxidase (DUOX) were increased. Serum TSH, 3,3′,5-triiodothyronine, and thyroxine were reduced in a 3,5-T2 dose-dependent manner, whereas oxygen consumption increased in these animals, indicating the direct action of 3,5-T2 on this physiological variable. Type 2 deiodinase activity increased in both the hypothalamus and the pituitary, and D1 activities in the liver and kidney were also increased in groups treated with 3,5-T2. Moreover, after 3 months of 3,5-T2 administration, body mass and retroperitoneal fat pad mass were significantly reduced, whereas the heart rate and mass were unchanged. Thus, 3,5-T2 acts as a direct stimulator of energy expenditure and reduces body mass gain; however, TSH suppression may develop secondary to 3,5-T2 administration.
机译:通常,3,5-二碘甲甲状腺素(3,5-T2)会增加静息代谢率和耗氧量,对高脂饮食的大鼠产生短期有益的代谢作用。我们的目的是评估3至6个月大的Wistar大鼠长期服用3,5-T2对下丘脑-垂体-甲状腺轴,体重增加,脂肪组织重量和身体耗氧量的影响。在3个月至6个月大之间,每天用3,5-T2(25、50或75微克/ 100微克体重,皮下注射)治疗大鼠90天。 3,5-T2的施用抑制了甲状腺功能,不仅降低了甲状腺碘化物的摄取,而且降低了甲状腺过氧化物酶,NADPH氧化酶4(NOX4)和甲状腺1型碘甲状腺素脱碘酶(D1(DIO1))的活性和表达水平,而TSH受体和双重氧化酶(DUOX)增加。血清TSH,3,3',5-三碘甲状腺氨酸和甲状腺素以3,5-T2剂量依赖性方式降低,而这些动物的耗氧量增加,表明3,5-T2对这一生理变量的直接作用。下丘脑和垂体中的2型脱碘酶活性均增加,而用3,5-T2处理的组中肝脏和肾脏中的D1活性也增加。此外,在3,5-T2给药3个月后,体重和腹膜后脂肪垫质量显着降低,而心率和质量没有变化。因此,3,5-T2可以直接刺激能量消耗并减少体重增加。但是,TSH抑制可能在3,5-T2给药后继发。

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