首页> 美国卫生研究院文献>American Journal of Physiology - Regulatory Integrative and Comparative Physiology >Neural Control: Separate and shared sympathetic outflow to white and brown fat coordinately regulates thermoregulation and beige adipocyte recruitment
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Neural Control: Separate and shared sympathetic outflow to white and brown fat coordinately regulates thermoregulation and beige adipocyte recruitment

机译:神经控制:白色脂肪和棕色脂肪分离并共享同情流出协调调节体温调节和米色脂肪细胞募集

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摘要

White adipose tissue (WAT) and brown adipose tissue (BAT) are innervated and regulated by the sympathetic nervous system (SNS). It is not clear, however, whether there are shared or separate central SNS outflows to WAT and BAT that regulate their function. We injected two isogenic strains of pseudorabies virus, a retrograde transneuronal viral tract tracer, with unique fluorescent reporters into interscapular BAT (IBAT) and inguinal WAT (IWAT) of the same Siberian hamsters to define SNS pathways to both. To test the functional importance of SNS coordinated control of BAT and WAT, we exposed hamsters with denervated SNS nerves to IBAT to 4°C for 16–24 h and measured core and fat temperatures and norepinephrine turnover (NETO) and uncoupling protein 1 (UCP1) expression in fat tissues. Overall, there were more SNS neurons innervating IBAT than IWAT across the neuroaxis. However, there was a greater percentage of singly labeled IWAT neurons in midbrain reticular nuclei than singly labeled IBAT neurons. The hindbrain had ~30–40% of doubly labeled neurons while the forebrain had ~25% suggesting shared SNS circuitry to BAT and WAT across the brain. The raphe nucleus, a key region in thermoregulation, had ~40% doubly labeled neurons. Hamsters with IBAT SNS denervation maintained core body temperature during acute cold challenge and had increased beige adipocyte formation in IWAT. They also had increased IWAT NETO, temperature, and UCP1 expression compared with intact hamsters. These data provide strong neuroanatomical and functional evidence of WAT and BAT SNS cross talk for thermoregulation and beige adipocyte formation.
机译:白色脂肪组织(WAT)和棕色脂肪组织(BAT)受交感神经系统(SNS)支配和调节。但是,尚不清楚是否有共享的或独立的中央SNS流出到WAT和BAT来调节其功能。我们向同一个西伯利亚仓鼠的肩inter间BAT(IBAT)和腹股沟WAT(IWAT)中注射了两种同基因的伪狂犬病病毒同系物,一种逆行的跨神经元病毒示踪剂,并带有独特的荧光报告基因,以定义两者的SNS途径。为了测试SNS协同控制BAT和WAT的功能重要性,我们将失神经的SNS神经仓鼠暴露于IBAT,在4°C下放置16-24 h,并测量了核心和脂肪温度以及去甲肾上腺素周转率(NETO)和解偶联蛋白1(UCP1 )在脂肪组织中的表达。总体而言,在整个神经轴上,支配IBAT的SNS神经元多于IWAT。但是,中脑网状细胞核中单标记的IWAT神经元的比例比单标记的IBAT神经元高。后脑约占双标记神经元的30–40%,而前脑约占25%的神经,表明大脑中BAT和WAT共享SNS电路。缝核是温度调节的关键区域,其双标记神经元约占40%。具有IBAT SNS去神经支配力的仓鼠在急性寒冷攻击期间保持核心体温,并增加了IWAT中米色脂肪细胞的形成。与完整的仓鼠相比,他们的IWAT NETO,温度和UCP1表达也增加了。这些数据为温调节和米色脂肪细胞形成提供了WAT和BAT SNS串扰的强有力的神经解剖学和功能证据。

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