期刊论文详细信息
Frontiers in Neuroscience
Unraveling the central proopiomelanocortin neural circuits
Charles K. Meshul1  Shane T. Hentges2  Aaron J. Mercer4  Malcolm J. Low4 
[1]Science University
[2]Colorado State University
[3]
[4]Oregon Health &University of Michigan, Ann Arbor
[5]Veterans Affairs Medical Center
关键词: Arcuate Nucleus;    Hypothalamus;    Metabolism;    neural networks;    energy homeostasis;    proopiomelanocortin neurons;   
DOI  :  10.3389/fnins.2013.00019
来源: DOAJ
【 摘 要 】
Central proopiomelanocortin (POMC) neurons form a potent anorexigenic network, but our understanding of the integration of this hypothalamic circuit throughout the central nervous system (CNS) remains incomplete. POMC neurons extend projections along the rostrocaudal axis of the brain, and can signal with both POMC-derived peptides and fast amino acid neurotransmitters. Although recent experimental advances in circuit-level manipulation have been applied to POMC neurons, many pivotal questions still remain: How and where do POMC neurons integrate metabolic information? Under what conditions do POMC neurons release bioactive molecules throughout the CNS? Are GABA and glutamate or neuropeptides released from POMC neurons more crucial for modulating feeding and metabolism? Resolving the exact stoichiometry of signals evoked from POMC neurons under different metabolic conditions therefore remains an ongoing endeavor. In this review, we analyze the anatomical atlas of this network juxtaposed to the physiological signaling of POMC neurons both in vitro and in vivo. We also consider novel genetic tools to further characterize the function of the POMC circuit in vivo. Our goal is to synthesize a global view of the POMC network, and to highlight gaps that require further research to expand our knowledge on how these neurons modulate energy balance.
【 授权许可】

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