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下丘脑促甲状腺激素释放激素神经元对甲状腺激素水平的调节。

Regulation of Thyroid Hormone Levels by Hypothalamic Thyrotropin-Releasing Hormone Neurons.

机构信息

Department of Medicine, Section of Endocrinology, Diabetes, Nutrition, and Weight Management, Chobanian and Avedisian School of Medicine, Boston University and Boston Medical Center, Boston, Massachusetts, USA.

Department of Medicine, Division of Endocrinology, Diabetes, and Metabolism, Weill Cornell Medicine, New York, New York, USA.

出版信息

Thyroid. 2023 Jul;33(7):867-876. doi: 10.1089/thy.2023.0173. Epub 2023 Jun 6.

Abstract

Thyrotropin-releasing hormone (TRH) neurons in the paraventricular nucleus of the hypothalamus (PVN) have been identified as direct regulators of thyrotropin (TSH) and thyroid hormone (TH) levels. They play a significant role in context of negative feedback by TH at the level of TRH gene expression and during fasting when TH levels fall due, in part, to suppression of TRH gene expression. To test these functions directly for the first time, we used a chemogenetic approach and activated PVN TRH neurons in both fed and fasted mice. Next, to demonstrate the signals that regulate the fasting response in TRH neurons, we activated or inhibited agouti-related protein (AgRP)/neuropeptide Y (NPY) neurons in the arcuate nucleus of the hypothalamus of fed or fasted mice, respectively. To determine if the same TRH neurons responsive to melanocortin signaling mediate negative feedback by TH, we disrupted the thyroid hormone receptor beta (TRβ) in all melanocortin 4 receptor (MC4R) neurons in the PVN. Activation of TRH neurons led to increased TSH and TH levels within 2 hours demonstrating the specific role of PVN TRH neurons in the regulation of the hypothalamic-pituitary-thyroid (HPT) axis. Moreover, activation of PVN TRH neurons prevented the fall in TH levels in fasting mice. Stimulation of AgRP/NPY neurons led to a fall in TH levels despite increasing feeding. Inhibition of these same neurons prevented the fall in TH levels during a fast presumably via their ability to directly regulate PVN TRH neurons via, in part, the MC4R. Surprisingly, TH-mediated feedback was not impaired in mice lacking TRβ in MC4R neurons. TRH neurons are major regulators of the HPT axis and the fasting-induced suppression of TH levels. The latter relies, at least in part, on the activation of AgRP/NPY neurons in the arcuate nucleus. Interestingly, present data do not support an important role for TRβ signaling in regulating MC4R neurons in the PVN. Thus, it remains possible that different subsets of TRH neurons in the PVN mediate responses to energy balance and to TH feedback.

摘要

下丘脑室旁核(PVN)中的促甲状腺激素释放激素(TRH)神经元已被确定为直接调节促甲状腺激素(TSH)和甲状腺激素(TH)水平的因素。它们在 TH 对 TRH 基因表达的负反馈中以及在禁食期间发挥重要作用,在禁食期间,由于部分原因,TH 水平下降,TRH 基因表达受到抑制。为了首次直接测试这些功能,我们使用了化学遗传方法,在进食和禁食的小鼠中激活了 PVN TRH 神经元。接下来,为了证明调节 TRH 神经元禁食反应的信号,我们分别激活或抑制了进食或禁食小鼠弓状核中的 AgRP/神经肽 Y(NPY)神经元。为了确定对黑色素皮质素信号有反应的相同 TRH 神经元是否介导 TH 的负反馈,我们破坏了所有黑素皮质素 4 受体(MC4R)神经元中的甲状腺激素受体β(TRβ)在 PVN 中。TRH 神经元的激活导致 TSH 和 TH 水平在 2 小时内升高,这表明 PVN TRH 神经元在调节下丘脑-垂体-甲状腺(HPT)轴中的特定作用。此外,TRH 神经元的激活防止了禁食小鼠中 TH 水平的下降。刺激 AgRP/NPY 神经元会导致 TH 水平下降,尽管进食增加。这些相同神经元的抑制阻止了 TH 水平在禁食期间下降,这可能是通过它们部分通过 MC4R 直接调节 PVN TRH 神经元的能力。令人惊讶的是,缺乏 MC4R 神经元中 TRβ 的小鼠中,TH 介导的反馈并未受损。TRH 神经元是 HPT 轴和禁食诱导的 TH 水平抑制的主要调节剂。后者至少部分依赖于弓状核中 AgRP/NPY 神经元的激活。有趣的是,目前的数据不支持 TRβ 信号在调节 PVN 中的 MC4R 神经元方面的重要作用。因此,仍然有可能是 PVN 中的不同 TRH 神经元亚群介导对能量平衡和 TH 反馈的反应。

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