4.8 Article

Divergent brainstem opioidergic pathways that coordinate breathing with pain and emotions

期刊

NEURON
卷 110, 期 5, 页码 857-+

出版社

CELL PRESS
DOI: 10.1016/j.neuron.2021.11.029

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资金

  1. NIMH [1R01MH116203]
  2. Brain Research Foundation Fay/Frank Seed Grant
  3. Salk Women & Science Special Award
  4. Mary K. Chapman Foundation
  5. Jesse & Caryl Philips Foundation
  6. Waitt Advanced Biophotonics Core Facility of the Salk Institute
  7. NIH-NCI CCSG [P30 014195]
  8. Waitt Foundation

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It is found that Oprm1-expressing neurons in the lateral parabrachial nucleus play a crucial role in coordinating breathing with affective pain in mice. These neurons synchronize with the breathing rhythm and respond to noxious stimuli. Through different projections, these neurons regulate breathing, affective pain, and negative emotions.
Breathing can be heavily influenced by pain or internal emotional states, but the neural circuitry underlying this tight coordination is unknown. Here we report that Oprm1 (mu-opioid receptor)-expressing neurons in the lateral parabrachial nucleus (PBL) are crucial for coordinating breathing with affective pain in mice. Individual PBLOprm1 neuronal activity synchronizes with breathing rhythm and responds to noxious stimuli. Manipulating PBLOprm1 activity directly changes breathing rate, affective pain perception, and anxiety. Furthermore, PBLOprm1 neurons constitute two distinct subpopulations in a core-shellconfiguration that divergently projects to the forebrain and hindbrain. Through non-overlapping projections to the central amygdala and pre-Botzinger complex, these two subpopulations differentially regulate breathing, affective pain, and negative emotions. Moreover, these subsets form recurrent excitatory networks through reciprocal glutamatergic projections. Together, our data define the divergent parabrachial opioidergic circuits as a common neural substrate that coordinates breathing with various sensations and behaviors such as pain and emotional processing.

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