B cell–derived acetylcholine mitigates skin inflammation in mice through α9 nicotinic acetylcholine receptor–mediated signaling

E Erica Foffi (Princess Margaret Cancer Centre, University Health Network) F Francesco Rugolo (Princess Margaret Cancer Centre, University Health Network) N Nisha Ramamurthy (Princess Margaret Cancer Centre, University Health Network) J Jillian Haight (Princess Margaret Cancer Centre, University Health Network) S Simone Helke (Princess Margaret Cancer Centre, University Health Network) A Annick You-Ten (Princess Margaret Cancer Centre, University Health Network) C Chantal Tobin (Princess Margaret Cancer Centre, University Health Network) S Soode Moghadas Jafari (Princess Margaret Cancer Centre, University Health Network) A Andrew J. Elia (Tumor Immunotherapy Program, Princess Margaret Cancer Centre, University Health Network) T Thorsten Berger (Princess Margaret Cancer Centre, University Health Network) E Eleonora Candi (Department of Experimental Medicine, University of Rome “Tor Vergata”) G Gerry Melino (Department of Experimental Medicine, TOR, University of Rome “Tor Vergata”) T Tak W. Mak (Princess Margaret Cancer Centre, University Health Network)

Abstract

Chronic inflammatory skin disorders are characterized by keratinocyte hyperproliferation and hyperactivation as well as immune cell infiltration. We investigated whether immune cell–derived acetylcholine (ACh) is a modulator of skin inflammation in mice. Here, we identify skin epithelial B cells as a key source of ACh that damps down inflammation. We used imiquimod (IMQ) to induce inflammatory skin disease (ISD) in mice lacking ACh production specifically in B cells (ChAT fl/fl;Mb1-Cre mice). Increased keratinocyte proliferation, epidermal thickening, and elevated levels of proinflammatory cytokines resulted. ACh binding to α9 nicotinic ACh receptor (encoded by Chrna9 ) expressed on wild-type mouse keratinocytes reduced their proliferation. Chrna9 -deficient mice exhibited the same exacerbated ISD phenotype as ChAT fl/fl;Mb1-Cre mice following IMQ induction. Our data suggest that B cell–derived ACh maintains skin homeostasis by modulating keratinocyte turnover and controlling immune-related inflammation. Therapeutic manipulation of this cholinergic pathway might mitigate both keratinocyte dysfunction and immune dysregulation in human patients, potentially pointing to treatments for ISDs such as psoriasis and related disorders.

Article Details

Volume / Issue Vol. 122, Issue 17
Published April 29, 2025
ISSN 0027-8424
Publisher National Academy of Sciences

Authors (13)

E

Erica Foffi

Princess Margaret Cancer Centre, University Health Network

F

Francesco Rugolo

Princess Margaret Cancer Centre, University Health Network

N

Nisha Ramamurthy

Princess Margaret Cancer Centre, University Health Network

J

Jillian Haight

Princess Margaret Cancer Centre, University Health Network

S

Simone Helke

Princess Margaret Cancer Centre, University Health Network

A

Annick You-Ten

Princess Margaret Cancer Centre, University Health Network

C

Chantal Tobin

Princess Margaret Cancer Centre, University Health Network

S

Soode Moghadas Jafari

Princess Margaret Cancer Centre, University Health Network

A

Andrew J. Elia

Tumor Immunotherapy Program, Princess Margaret Cancer Centre, University Health Network

T

Thorsten Berger

Princess Margaret Cancer Centre, University Health Network

E

Eleonora Candi

Department of Experimental Medicine, University of Rome “Tor Vergata”

G

Gerry Melino

Department of Experimental Medicine, TOR, University of Rome “Tor Vergata”

T

Tak W. Mak

Princess Margaret Cancer Centre, University Health Network