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QPLOT神经元——汇聚于体温调节视前区神经元群体

QPLOT Neurons-Converging on a Thermoregulatory Preoptic Neuronal Population.

作者信息

Upton Brian A, D'Souza Shane P, Lang Richard A

机构信息

The Visual Systems Group, Abrahamson Pediatric Eye Institute, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, United States.

Division of Pediatric Ophthalmology, Center for Chronobiology, Cincinnati Children's Hospital Medical Center, Cincinnati, OH, United States.

出版信息

Front Neurosci. 2021 May 4;15:665762. doi: 10.3389/fnins.2021.665762. eCollection 2021.

Abstract

The preoptic area of the hypothalamus is a homeostatic control center. The heterogeneous neurons in this nucleus function to regulate the sleep/wake cycle, reproduction, thirst and hydration, as well as thermogenesis and other metabolic responses. Several recent studies have analyzed preoptic neuronal populations and demonstrated neuronal subtype-specific roles in suppression of thermogenesis. These studies showed similar thermogenesis responses to chemogenetic modulation, and similar synaptic tracing patterns for neurons that were responsive to cold, to inflammatory stimuli, and to violet light. A reanalysis of single-cell/nucleus RNA-sequencing datasets of the preoptic nucleus indicate that these studies have converged on a common neuronal population that when activated, are sufficient to suppress thermogenesis. Expanding on a previous name for these neurons (Q neurons, which reflect their ability to promote quiescence and expression of ), we propose a new name: QPLOT neurons, to reflect numerous molecular markers of this population and to capture its broader roles in metabolic regulation. Here, we summarize previous findings on this population and present a unified description of QPLOT neurons, the excitatory preoptic neuronal population that integrate a variety of thermal, metabolic, hormonal and environmental stimuli in order to regulate metabolism and thermogenesis.

摘要

下丘脑视前区是一个稳态控制中心。该核团中的异质性神经元负责调节睡眠/觉醒周期、生殖、口渴与水合作用,以及产热和其他代谢反应。最近的几项研究分析了视前区神经元群体,并证明了神经元亚型在抑制产热方面的特定作用。这些研究显示,对化学遗传学调节的产热反应相似,对寒冷、炎症刺激和紫光有反应的神经元的突触追踪模式也相似。对视前核单细胞/细胞核RNA测序数据集的重新分析表明,这些研究聚焦于一个共同的神经元群体,该群体被激活时足以抑制产热。在先前为这些神经元命名(Q神经元,反映了它们促进静止和表达的能力)的基础上进行扩展,我们提出一个新名称:QPLOT神经元,以反映该群体的众多分子标记,并体现其在代谢调节中的更广泛作用。在此,我们总结了此前关于该群体的研究发现,并对QPLOT神经元进行统一描述,即整合多种热、代谢、激素和环境刺激以调节代谢和产热的兴奋性视前神经元群体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6208/8130930/333a8f4fd873/fnins-15-665762-g001.jpg

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