journal article Nov 02, 2018

The central amygdala to periaqueductal gray pathway comprises intrinsically distinct neurons differentially affected in a model of inflammatory pain

The Journal of Physiology Vol. 596 No. 24 pp. 6289-6305 · Wiley
Abstract
Key points



The central nucleus of the amygdala (CeA) encompasses the main output pathways of the amygdala, a temporal lobe structure essential in affective and cognitive dimensions of pain.


A major population of neurons in the CeA send projections to the periaqueductal gray (PAG), a key midbrain structure that mediates coping strategies in response to threat or stress.


CeA‐PAG neurons are topographically organized based on their targeted subregion within the PAG.


PAG‐projecting neurons in the central medial (CeM) and central lateral (CeL) regions of CeA are intrinsically distinct.


CeL‐PAG neurons are a homogeneous population of intrinsically distinct neurons while CeM‐PAG neurons are intrinsically heterogeneous.


Membrane properties of distinct CeM‐PAG subtypes are altered in the complete Freund's adjuvant model of inflammatory pain.





Abstract
A major population of neurons in the central nucleus of amygdala (CeA) send projections to the periaqueductal gray (PAG), a key midbrain structure that mediates coping strategies in response to threat or stress. While the CeA‐PAG pathway has proved to be a component of descending anti‐nociceptive circuitry, the functional organization of CeA‐PAG neurons remains unclear. We identified CeA‐PAG neurons in C57BL/6 mice of both sexes using intracranial injection of a fluorescent retrograde tracer into the PAG. In acute brain slices, we investigated the topographical and intrinsic characteristics of retrogradely labelled CeA‐PAG neurons using epifluorescence and whole‐cell electrophysiology. We also measured changes to CeA‐PAG neurons in the complete Freund's adjuvant (CFA) model of inflammatory pain. Neurons in the central lateral (CeL) and central medial (CeM) amygdala project primarily to different regions of the PAG. CeL‐PAG neurons consist of a relatively homogeneous population of intrinsically distinct neurons while CeM‐PAG neurons are intrinsically heterogeneous. Membrane properties of distinct CeM‐PAG subtypes are altered 1 day after induction of the CFA inflammatory pain model. Collectively, our results provide insight into pain‐induced changes to a specific population of CeA neurons that probably play a key role in the integration of noxious input with endogenous analgesia and behavioural coping response.
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References
56
[4]
Central circuits mediating patterned autonomic activity during active vs. passive emotional coping

Richard Bandler, Kevin A Keay, Nicole Floyd et al.

Brain Research Bulletin 10.1016/s0361-9230(00)00313-0
[13]
Encoding of conditioned fear in central amygdala inhibitory circuits

Stéphane Ciocchi, Cyril Herry, François Grenier et al.

Nature 10.1038/nature09559
[18]
Dong HW (2008)
[25]
Asymmetric time‐dependent activation of right central amygdala neurones in rats with peripheral neuropathy and pregabalin modulation

Leonor Gonçalves, Anthony H. Dickenson

European Journal of Neuroscience 10.1111/j.1460-9568.2012.08235.x
[30]
NMDA receptor-independent synaptic plasticity in the central amygdala in the rat model of neuropathic pain

Ryo Ikeda, Yukari Takahashi, Kazuhide Inoue et al.

Pain 10.1016/j.pain.2006.09.003
[41]
Martinov T "Measuring changes in tactile sensitivity in the hind paw of mice using an electronic von Frey apparatus" J Vis Exp (2013)
[42]
Quantified Coexpression Analysis of Central Amygdala Subpopulations

Kenneth M. McCullough, Filomene G. Morrison, Jakob Hartmann et al.

eneuro 10.1523/eneuro.0010-18.2018
[50]
Regional expression of a gene encoding a neuron-specific Na+-dependent inorganic phosphate cotransporter (DNPI) in the rat forebrain

Setsuji Hisano, Koichi Hoshi, Yayoi Ikeda et al.

Molecular Brain Research 10.1016/s0169-328x(00)00194-7

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Published
Nov 02, 2018
Vol/Issue
596(24)
Pages
6289-6305
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Cite This Article
Jun‐Nan Li, Patrick L. Sheets (2018). The central amygdala to periaqueductal gray pathway comprises intrinsically distinct neurons differentially affected in a model of inflammatory pain. The Journal of Physiology, 596(24), 6289-6305. https://doi.org/10.1113/jp276935