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首页> 外文期刊>Journal of Thyroid Research >The Role of Hypothalamic Tri-Iodothyronine Availability in Seasonal Regulation of Energy Balance and Body Weight
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The Role of Hypothalamic Tri-Iodothyronine Availability in Seasonal Regulation of Energy Balance and Body Weight

机译:下丘脑三碘甲状腺素可用性在能量平衡和体重的季节性调节中的作用

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Seasonal cycles of body weight provide a natural model system to understand the central control of energy balance. Studies of such cycles in Siberian hamsters suggest that a change in the hypothalamic availability of thyroid hormone is the key determinant of annual weight regulation. Uptake of thyroid hormone into the hypothalamus from the peripheral circulation occurs largely through a specific monocarboxylate transporter expressed by tanycyte cells lining the third ventricle. Tanycytes are the principal brain cell type expressing type II and type III deiodinases, so they control the local concentrations of T4, T3, and inactive metabolites. Type III deiodinase mRNA in tanycytes is photoperiodically upregulated in short photoperiod. This would be expected to reduce the availability of T3 in the hypothalamus by promoting the production of inactive metabolites such as rT3. Experimental microimplantation of T3 directly into the hypothalamus during short-days promotes a long-day phenotype by increasing food intake and body weight without affecting the peripheral thyroid axis. Thus, thyroid hormone exerts anabolic actions within the brain that play a key role in the seasonal regulation of body weight. Understanding the precise actions of thyroid hormone in the brain may identify novel targets for long-term pharmacological manipulation of body weight.
机译:体重的季节性周期为了解能量平衡的中央控制提供了自然的模型系统。对西伯利亚仓鼠中此类循环的研究表明,甲状腺功能的下丘脑可利用性的变化是每年体重调节的关键决定因素。甲状腺激素从外周循环吸收进入下丘脑的过程主要是通过位于第三脑室的单核细胞表达的特定的单羧酸盐转运蛋白发生的。单核细胞是表达II型和III型脱碘酶的主要脑细胞类型,因此它们控制着T4,T3和非活性代谢产物的局部浓度。在短的光周期中,光周期上调了单核细胞中的III型脱碘酶mRNA。通过促进无活性代谢产物(如rT3)的产生,这有望降低下丘脑中T3的利用率。在短时间内,将T3直接植入下丘脑的实验性微种植通过增加食物摄入量和体重而促进了长日表型,而不会影响周围的甲状腺轴。因此,甲状腺激素在大脑内发挥合成代谢作用,在体重的季节性调节中起关键作用。了解大脑中甲状腺激素的确切作用可能会为体重的长期药理学治疗确定新的靶标。

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