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PIEZO2-dependent rapid pain system in humans and mice.

Authors :
Bouchatta O
Brodzki M
Manouze H
Carballo GB
Kindström E
de-Faria FM
Yu H
Kao AR
Thorell O
Liljencrantz J
Ng KKW
Frangos E
Ragnemalm B
Saade D
Bharucha-Goebel D
Szczot I
Moore W
Terejko K
Cole J
Bonnemann C
Luo W
Mahns DA
Larsson M
Gerling GJ
Marshall AG
Chesler AT
Olausson H
Nagi SS
Szczot M
Source :
BioRxiv : the preprint server for biology [bioRxiv] 2023 Dec 02. Date of Electronic Publication: 2023 Dec 02.
Publication Year :
2023

Abstract

The PIEZO2 ion channel is critical for transducing light touch into neural signals but is not considered necessary for transducing acute pain in humans. Here, we discovered an exception - a form of mechanical pain evoked by hair pulling. Based on observations in a rare group of individuals with PIEZO2 deficiency syndrome, we demonstrated that hair-pull pain is dependent on PIEZO2 transduction. Studies in control participants showed that hair-pull pain triggered a distinct nocifensive response, including a nociceptive reflex. Observations in rare Aβ deafferented individuals and nerve conduction block studies in control participants revealed that hair-pull pain perception is dependent on Aβ input. Single-unit axonal recordings revealed that a class of cooling-responsive myelinated nociceptors in human skin is selectively tuned to painful hair-pull stimuli. Further, we pharmacologically mapped these nociceptors to a specific transcriptomic class. Finally, using functional imaging in mice, we demonstrated that in a homologous nociceptor, Piezo2 is necessary for high-sensitivity, robust activation by hair-pull stimuli. Together, we have demonstrated that hair-pulling evokes a distinct type of pain with conserved behavioral, neural, and molecular features across humans and mice.<br />Competing Interests: Conflict of interest. None

Details

Language :
English
Database :
MEDLINE
Journal :
BioRxiv : the preprint server for biology
Accession number :
38168273
Full Text :
https://doi.org/10.1101/2023.12.01.569650