Back to Search Start Over

Muscle Damage in Dystrophic mdx Mice Is Influenced by the Activity of Ca2+-Activated KCa3.1 Channels.

Authors :
Morotti, Marta
Morotti, Marta
Garofalo, Stefano
Cocozza, Germana
Antonangeli, Fabrizio
Bianconi, Valeria
Mozzetta, Chiara
De Stefano, Maria Egle
Capitani, Riccardo
Wulff, Heike
Limatola, Cristina
Catalano, Myriam
Grassi, Francesca
Morotti, Marta
Morotti, Marta
Garofalo, Stefano
Cocozza, Germana
Antonangeli, Fabrizio
Bianconi, Valeria
Mozzetta, Chiara
De Stefano, Maria Egle
Capitani, Riccardo
Wulff, Heike
Limatola, Cristina
Catalano, Myriam
Grassi, Francesca
Source :
Life (Basel, Switzerland); vol 12, iss 4, 538; 2075-1729
Publication Year :
2022

Abstract

Duchenne muscular dystrophy (DMD) is an X-linked disease, caused by a mutant dystrophin gene, leading to muscle membrane instability, followed by muscle inflammation, infiltration of pro-inflammatory macrophages and fibrosis. The calcium-activated potassium channel type 3.1 (KCa3.1) plays key roles in controlling both macrophage phenotype and fibroblast proliferation, two critical contributors to muscle damage. In this work, we demonstrate that pharmacological blockade of the channel in the mdx mouse model during the early degenerative phase favors the acquisition of an anti-inflammatory phenotype by tissue macrophages and reduces collagen deposition in muscles, with a concomitant reduction of muscle damage. As already observed with other treatments, no improvement in muscle performance was observed in vivo. In conclusion, this work supports the idea that KCa3.1 channels play a contributing role in controlling damage-causing cells in DMD. A more complete understanding of their function could lead to the identification of novel therapeutic approaches.

Details

Database :
OAIster
Journal :
Life (Basel, Switzerland); vol 12, iss 4, 538; 2075-1729
Notes :
application/pdf, Life (Basel, Switzerland) vol 12, iss 4, 538 2075-1729
Publication Type :
Electronic Resource
Accession number :
edsoai.on1367389435
Document Type :
Electronic Resource