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亚热带地区天气变化时的甲状腺功能。

Thyroid function in changing weather in a subtropical region.

作者信息

Rastogi G K, Sawhney R C

出版信息

Metabolism. 1976 Aug;25(8):903-8. doi: 10.1016/0026-0495(76)90123-2.

Abstract

Serum and 24-hr urine samples were collected on 2 consecutive days during the first week of each month for 1 yr from eight healthy euthyroid men aged 25-37 yr. The means of minimum and maximum environmental temperature for the 30 days period preceding the sample collection represented the temperature for that month. Total serum thyroxine (T4), triiodothyronine (T3), thyrotropin (TSH), and urinary T3 and T4 were measured by specific radioimmunoassays and serum thyroxine-binding globulin (TBG) by the radioligand binding assay. The serum TSH and urinary T3 and T4 responses to 100 mug intravenous TRH were studied in five subjects during summer and again during winter. The serum concentration of these hormones and TBG did not reveal significant variations throughout the year. However, the mean urinary excretion of both T3 and T4 during coldest months (January and February), at 0.97 and 1.95 mug/24 hr, respectively were significantly higher than the corresponding values (T3, 0.48; T4, 1.18 mug/24 hr) during the hottest months (May-July). The TSH, and urinary T3 and T4 responses to identical doses of TRH during summer and winter did not differ significantly. Since urinary T3 and T4 indirectly reflect the prevailing unbound serum levels of these hormones, it is likely that the greater availability of free and biologically active thyroid hormones could help the body to adapt to cold by increasing nonshivering thermogenesis.

摘要

在1年的时间里,每月的第一周连续两天收集8名年龄在25至37岁之间的健康甲状腺功能正常男性的血清和24小时尿液样本。样本采集前30天的最低和最高环境温度平均值代表该月的温度。采用特异性放射免疫分析法测定血清总甲状腺素(T4)、三碘甲状腺原氨酸(T3)、促甲状腺激素(TSH)以及尿T3和T4,采用放射配体结合分析法测定血清甲状腺素结合球蛋白(TBG)。在夏季和冬季分别对5名受试者研究了静脉注射100μg促甲状腺激素释放激素(TRH)后血清TSH以及尿T3和T4的反应。这些激素和TBG的血清浓度全年未显示出显著变化。然而,在最冷的月份(1月和2月),尿T3和T4的平均排泄量分别为0.97和1.95μg/24小时,显著高于最热月份(5月至7月)的相应值(T3为0.48;T4为1.18μg/24小时)。夏季和冬季相同剂量TRH刺激后TSH以及尿T3和T4的反应无显著差异。由于尿T3和T4间接反映了这些激素在血清中的游离水平,游离且具有生物活性的甲状腺激素可用性增加可能有助于机体通过增加非寒战产热来适应寒冷。

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