A Neural Circuit for the Suppression of Pain by a Competing Need State

被引:166
作者
Alhadeff, Amber L. [1 ]
Su, Zhenwei [1 ]
Hernandez, Elen [1 ]
Klima, Michelle L. [1 ]
Phillips, Sophie Z. [1 ]
Holland, Ruby A. [2 ]
Guo, Caiying [3 ]
Hantman, Adam W. [3 ]
De Jonghe, Bart C. [2 ]
Betley, J. Nicholas [1 ]
机构
[1] Univ Penn, Dept Biol, Philadelphia, PA 19104 USA
[2] Univ Penn, Dept Biobehav Hlth Sci, Philadelphia, PA 19104 USA
[3] Howard Hughes Med Inst, Janelia Res Campus, Ashburn, VA 20147 USA
关键词
NEUROPEPTIDE-Y; AGRP NEURONS; PARABRACHIAL NUCLEUS; FEEDING-BEHAVIOR; TEACHING SIGNAL; ENERGY-BALANCE; FORMALIN TEST; FOOD-INTAKE; ADULT MICE; RECEPTOR;
D O I
10.1016/j.cell.2018.02.057
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
070307 [化学生物学]; 071010 [生物化学与分子生物学];
摘要
Hunger and pain are two competing signals that individuals must resolve to ensure survival. However, the neural processes that prioritize conflicting survival needs are poorly understood. We discovered that hunger attenuates behavioral responses and affective properties of inflammatory pain without altering acute nociceptive responses. This effect is centrally controlled, as activity in hunger-sensitive agoutirelated protein (AgRP)-expressing neurons abrogates inflammatory pain. Systematic analysis of AgRP projection subpopulations revealed that the neural processing of hunger and inflammatory pain converge in the hindbrain parabrachial nucleus (PBN). Strikingly, activity in AgRP -> PBN neurons blocked the behavioral response to inflammatory pain as effectively as hunger or analgesics. The anti-nociceptive effect of hunger is mediated by neuropeptide Y(NPY) signaling in the PBN. By investigating the intersection between hunger and pain, we have identified a neural circuit that mediates competing survival needs and uncovered NPY Y1 receptor signaling in the PBN as a target for pain suppression.
引用
收藏
页码:140 / +
页数:28
相关论文
共 58 条
[1]
Alhadeff AL, 2017, J NEUROSCI, V37, P362, DOI [10.1523/JNEUROSCI.2714-16.2017, 10.1523/JNEUROSCI.2714-16.2016]
[2]
Peptide YY signaling in the lateral parabrachial nucleus increases food intake through the Y1 receptor [J].
Alhadeff, Amber L. ;
Golub, Danielle ;
Hayes, Matthew R. ;
Grill, Harvey J. .
AMERICAN JOURNAL OF PHYSIOLOGY-ENDOCRINOLOGY AND METABOLISM, 2015, 309 (08) :E759-E766
[3]
Toward a Wiring Diagram Understanding of Appetite Control [J].
Andermann, Mark L. ;
Lowell, Bradford B. .
NEURON, 2017, 95 (04) :757-778
[4]
AGRP neurons are sufficient to orchestrate feeding behavior rapidly and without training [J].
Aponte, Yexica ;
Atasoy, Deniz ;
Sternson, Scott M. .
NATURE NEUROSCIENCE, 2011, 14 (03) :351-355
[5]
Deconstruction of a neural circuit for hunger [J].
Atasoy, Deniz ;
Betley, J. Nicholas ;
Su, Helen H. ;
Sternson, Scott M. .
NATURE, 2012, 488 (7410) :172-+
[6]
Baulmann J, 2000, NEUROSCIENCE, V95, P813
[7]
Neurons for hunger and thirst transmit a negative-valence teaching signal [J].
Betley, J. Nicholas ;
Xu, Shengjin ;
Cao, Zhen Fang Huang ;
Gong, Rong ;
Magnus, Christopher J. ;
Yu, Yang ;
Sternson, Scott M. .
NATURE, 2015, 521 (7551) :180-+
[8]
Parallel, Redundant Circuit Organization for Homeostatic Control of Feeding Behavior [J].
Betley, J. Nicholas ;
Cao, Zhen Fang Huang ;
Ritola, Kimberly D. ;
Sternson, Scott M. .
CELL, 2013, 155 (06) :1337-1350
[9]
Stringent Specificity in the Construction of a GABAergic Presynaptic Inhibitory Circuit [J].
Betley, J. Nicholas ;
Wright, Christopher V. E. ;
Kawaguchi, Yoshiya ;
Erdelyi, Ferenc ;
Szabo, Gabor ;
Jessell, Thomas M. ;
Kaltschmidt, Julia A. .
CELL, 2009, 139 (01) :161-174
[10]
STRESS-PRODUCED ANALGESIA AND MORPHINE-PRODUCED ANALGESIA - LACK OF CROSS-TOLERANCE [J].
BODNAR, RJ ;
KELLY, DD ;
STEINER, SS ;
GLUSMAN, M .
PHARMACOLOGY BIOCHEMISTRY AND BEHAVIOR, 1978, 8 (06) :661-666