Central and peripheral GLP-1 systems independently suppress eating

被引:145
作者
Brierley, Daniel I. [1 ]
Holt, Marie K. [2 ]
Singh, Arashdeep [3 ,4 ]
de Araujo, Alan [3 ,4 ]
McDougle, Molly [3 ,4 ]
Vergara, Macarena [3 ,4 ]
Afaghani, Majd H. [3 ,4 ]
Lee, Shin Jae [5 ]
Scott, Karen [3 ]
Maske, Calyn [3 ,4 ]
Langhans, Wolfgang [5 ]
Krause, Eric [3 ,4 ]
de Kloet, Annette [4 ,6 ]
Gribble, Fiona M. [7 ]
Reimann, Frank [7 ]
Rinaman, Linda [2 ]
de Lartigue, Guillaume [3 ,4 ]
Trapp, Stefan [1 ]
机构
[1] UCL, Dept Neurosci Physiol & Pharmacol, Ctr Cardiovasc & Metab Neurosci, London, England
[2] Florida State Univ, Program Neurosci, Dept Psychol, Gainesville, FL USA
[3] Univ Florida, Dept Pharmacodynam, Gainesville, FL 32610 USA
[4] Univ Florida, Ctr Integrat Cardiovasc & Metab Dis, Gainesville, FL 32609 USA
[5] Swiss Fed Inst Technol, Dept Hlth Sci & Technol, Zurich, Switzerland
[6] Univ Florida, Dept Physiol & Funct Genom, Gainesville, FL USA
[7] Univ Cambridge, Inst Metab Sci, Cambridge, England
基金
英国惠康基金; 英国医学研究理事会; 美国国家卫生研究院;
关键词
GLUCAGON-LIKE PEPTIDE-1; BEHAVIORAL SATIETY SEQUENCE; RECEPTOR-EXPRESSING CELLS; VAGAL AFFERENT NEURONS; PREPROGLUCAGON NEURONS; SENSORY NEURONS; SOLITARY TRACT; FOOD-INTAKE; MALE RATS; NUCLEUS;
D O I
10.1038/s42255-021-00344-4
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
GLP-1 is an incretin hormone and neuromodulator produced by gut enterocytes and CNS neurons. Brierley et al. find that GLP-1 from peripheral and central sources acts independently through distinct gut-brain circuits to suppress eating. The anorexigenic peptide glucagon-like peptide-1 (GLP-1) is secreted from gut enteroendocrine cells and brain preproglucagon (PPG) neurons, which, respectively, define the peripheral and central GLP-1 systems. PPG neurons in the nucleus tractus solitarii (NTS) are widely assumed to link the peripheral and central GLP-1 systems in a unified gut-brain satiation circuit. However, direct evidence for this hypothesis is lacking, and the necessary circuitry remains to be demonstrated. Here we show that PPG(NTS) neurons encode satiation in mice, consistent with vagal signalling of gastrointestinal distension. However, PPG(NTS) neurons predominantly receive vagal input from oxytocin-receptor-expressing vagal neurons, rather than those expressing GLP-1 receptors. PPG(NTS) neurons are not necessary for eating suppression by GLP-1 receptor agonists, and concurrent PPG(NTS) neuron activation suppresses eating more potently than semaglutide alone. We conclude that central and peripheral GLP-1 systems suppress eating via independent gut-brain circuits, providing a rationale for pharmacological activation of PPG(NTS) neurons in combination with GLP-1 receptor agonists as an obesity treatment strategy.
引用
收藏
页码:258 / +
页数:24
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