肥胖(ob/ob)小鼠低温和甲状腺功能的研究。

M. Ohtake, G. Bray, M. Azukizawa
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引用次数: 48

摘要

本文探讨了低温后肥胖小鼠甲状腺功能与低温的关系。T3治疗的肥胖小鼠体温下降速度比未治疗的肥胖小鼠慢。在瘦小鼠中,PTU预处理诱导甲状腺功能减退,可提高小鼠在寒冷环境下的体温下降速度。28 t时,肥胖小鼠和瘦小鼠的循环TSH水平相同,24°C后,肥胖小鼠的TSH增加幅度大于瘦小鼠,但4°C时TSH的最大反应在瘦小鼠和肥胖小鼠之间相同。肥胖小鼠的TSH对TRH的反应明显较弱。肥胖小鼠甲状腺125i的摄取也较低。然而,摄取的减少伴随着更高的周转率,BEI中放射性的更快出现表明了这一点。TSH预处理能增加甲状腺大小、放射性碘的摄取、血清中T4和T3的浓度,但不能改变低温后肥胖小鼠体温的快速下降。通过注射甲巯咪唑使瘦鼠和肥胖鼠甲状腺功能减退,然后给予T3,研究了外源性T3反应受损的可能性。每天补充T3 15mg时,肥胖小鼠血浆T3水平高于瘦小鼠,每天补充T3 50ng时,肥胖小鼠血浆TSH水平低于瘦小鼠。然而,即使在肥胖小鼠中使用最高剂量的T3也不能完全阻止体温的下降。这些研究表明外周对三碘甲状腺原氨酸的无反应可能是这些动物低代谢和低体温的主要原因。
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Studies on hypothermia and thyroid function in the obese (ob/ob) mouse.
This paper examined some of the relations between thyroid function and the hypothermia of the obese mouse after exposure to the cold. The fall in body temperature of obese mice treated with T3 was less rapid than in untreated obese mice. In the lean mouse, the induction of hypothyroidism by pretreatment with PTU enhanced the rate of fall of body temperature of these mice while in the cold. Circulating levels of TSH were the same in lean and obese mice at 28 t and after exposure to 24°C, TSH in obese mouse was increased more than in lean mouse, but maximal response of TSH to cold at 4°C was same between lean and obese mouse.The TSH response to TRH was significantly less in the obese mice. The thyroidal 125I-uptake was also lower in the obese mouse. The lowered uptake was, however, accompanied by a higher turnover rate as indicated by the more rapid appearance of radioactivity in BEI. Pretreatment with TSH increased the size of the thyroid gland, the uptake of radioactive iodine, the concentration of T4 and T3 in the serum, but did not alter the rapid decline in body temperature of the obese mouse after exposure to the cold. The possibility of an impaired response to exogenous T3 was examined by rendering lean and obese mice hypothyroid with injections of methimazole and then giving T3. The level of plasma T3 in obese mouse was higher than in lean mouse on daily supprement of T3 15mg and and the level of plasma TSH in obese mouse was lower on daily supprement of T3 50ng. However, not even the highest dose of T3 in the obese mice prevented completely the fall in body temperature. These studies suggest that peripheral unresponsiveness to the actions of triiodothyronine may be a major reason for the hypometabolism and hypothermia in these animals.
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