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Lateral Hypothalamic Area Neurotensin Neurons Are Required for Control of Orexin Neurons and Energy Balance

机译:侧面下丘脑区域神经调度素神经元是控制orexin神经元和能量平衡所必需的

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摘要

The lateral hypothalamic area (LHA) is essential for motivated ingestive and locomotor behaviors that impact body weight, yet it remains unclear how the neurochemically defined subpopulations of LHA neurons contribute to energy balance. In particular, the role of the large population of LHA neurotensin (Nts) neurons has remained ambiguous due to the lack of methods to easily visualize and modulate these neurons. Because LHA Nts neurons are activated by leptin and other anorectic cues and they modulate dopamine or local LHA orexin neurons implicated in energy balance, they may have important, unappreciated roles for coordinating behaviors necessary for proper body weight. In this study, we genetically ablated or chemogenetically inhibited LHA Nts neurons in adult mice to determine their necessity for control of motivated behaviors and body weight. Genetic ablation of LHA Nts neurons resulted in profoundly increased adiposity compared with mice with intact LHA Nts neurons, as well as diminished locomotor activity, energy expenditure, and water intake. Complete loss of LHA Nts neurons also led to downregulation of orexin, revealing important cross-talk between the LHA Nts and orexin populations in maintenance of behavior and body weight. In contrast, chemogenetic inhibition of intact LHA Nts neurons did not disrupt orexin expression, but it suppressed locomotor activity and the adaptive response to leptin. Taken together, these data reveal the necessity of LHA Nts neurons and their activation for controlling energy balance, and that LHA Nts neurons influence behavior and body weight via orexin-dependent and orexin-independent mechanisms.
机译:侧面下丘脑区域(LHA)对于影响体重的动机的摄取和运动行为是必不可少的,然而它仍然尚不清楚LHA神经元的神经化学定义亚群对能量平衡有助于能量平衡。特别是,由于缺乏易于想象和调节这些神经元的方法,LHA神经调度素(NTS)神经元的大群(NTS)神经元的作用仍然存在含糊不清。因为LHA NTS神经元由瘦素和其他肛肠线索激活,并且它们调节多巴胺或局部LHA orexin神经元致力于能量平衡,它们可能具有重要的,未被珍视的作用,用于协调适当体重所需的行为。在这项研究中,我们在成年小鼠中遗传烧蚀或中间抑制的LHA NTS神经元,以确定它们对控制动机行为和体重的必要性。与完整的LHA NT神经元的小鼠相比,LHA NTS神经元的遗传消融导致肥胖的肥厚较高,以及减少运动活动,能量消耗和水摄入量。完全丧失LHA NTS神经元也导致了orexin的下调,揭示了LHA NTS和orexin群体之间的重要串扰,以维持行为和体重。相比之下,化学性抑制完整的LHA NTS神经元不会破坏orexin表达,但它抑制了运动活性和对瘦素的适应性反应。总之,这些数据揭示了LHA NTS神经元的必要性及其对控制能量平衡的激活,并且LHA NTS神经元通过替代依赖于orexin和独立的机制影响行为和体重。

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  • 来源
    《Endocrinology》 |2018年第9期|共19页
  • 作者单位

    Michigan State Univ Dept Pharmacol &

    Toxicol E Lansing MI 48114 USA;

    Michigan State Univ Dept Physiol 567 Wilson Rd BPS Bldg Room 3183 E Lansing MI 48114 USA;

    Michigan State Univ Dept Physiol 567 Wilson Rd BPS Bldg Room 3183 E Lansing MI 48114 USA;

    Michigan State Univ Dept Physiol 567 Wilson Rd BPS Bldg Room 3183 E Lansing MI 48114 USA;

    Michigan State Univ Dept Physiol 567 Wilson Rd BPS Bldg Room 3183 E Lansing MI 48114 USA;

    Beth Israel Deaconess Med Ctr Dept Neurol Boston MA 02115 USA;

    Michigan State Univ Inst Integrat Toxicol E Lansing MI 48114 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 内分泌腺疾病及代谢病;
  • 关键词

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