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January 7, 2017EBioMedicine26 citationsOpen Access

Pharmacological Inhibition of PKCθ Counteracts Muscle Disease in a Mouse Model of Duchenne Muscular Dystrophy

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VMValeria MarroccoUniversity of California, San DiegoPFPiera Filomena FioreBambino Gesù Children's HospitalABAnna BenedettiIstituti di Ricovero e Cura a Carattere Scientifico

Key Result

Treatment with the PKCθ inhibitor Compound 20 in mdx mice significantly reduced muscle damage and inflammation, and recovered muscle performance by preserving muscle integrity.

Structured PICO

Does pharmacological inhibition of PKCθ with Compound 20 reduce muscle damage and improve muscle performance in a mouse model of Duchenne Muscular Dystrophy?

P
Population
Young mdx mice, a model of Duchenne Muscular Dystrophy, treated with the PKCθ inhibitor Compound 20.
I
Intervention
PKCθ inhibitor Compound 20 (C20)
O
Outcome
Muscle damage, immune cell infiltration, inflammatory pathways activation, muscle regeneration, and muscle performancesurrogate

Pharmacological inhibition of PKCθ with Compound 20 reduces muscle damage and improves muscle performance in a mouse model of Duchenne Muscular Dystrophy, suggesting a potential therapeutic strategy to modulate immune response.

Abstract

Inflammation plays a considerable role in the progression of Duchenne Muscular Dystrophy (DMD), a severe muscle disease caused by a mutation in the dystrophin gene. We previously showed that genetic ablation of Protein Kinase C θ (PKCθ) in mdx, the mouse model of DMD, improves muscle healing and regeneration, preventing massive inflammation. To establish whether pharmacological targeting of PKCθ in DMD can be proposed as a therapeutic option, in this study we treated young mdx mice with the PKCθ inhibitor Compound 20 (C20). We show that C20 treatment led to a significant reduction in muscle damage associated with reduced immune cells infiltration, reduced inflammatory pathways activation, and maintained muscle regeneration. Importantly, C20 treatment is efficient in recovering muscle performance in mdx mice, by preserving muscle integrity. Together, these results provide proof of principle that pharmacological inhibition of PKCθ in DMD can be considered an attractive strategy to modulate immune response and prevent the progression of the disease. RESEARCH IN CONTEXT: Duchenne muscular dystrophy (DMD) is a severe muscle disease affecting 1:3500 male births. DMD is caused by a mutation in dystrophin gene, coding for a protein required for skeletal and cardiac muscle integrity. Lack of a functional dystrophin is primarily responsible for the muscle eccentric contraction-induced muscle damage, observed in dystrophic muscle. However, inflammation plays a considerable role in the progression of DMD. Glucocorticoids, which have anti-inflammatory properties, are being used to treat DMD with some success; however, long term treatment with these drugs induces muscle atrophy and wasting, outweighing their benefit. The identification of specific targets for anti-inflammatory therapies is one of the ongoing therapeutic options. Although blunting inflammation would not be a "cure" for the disease, the emerging clue is that multiple strategies, addressing different aspects of the pathology, which may eventually converge, may be successful. In this context, we previously showed that genetic ablation of Protein Kinase C θ (PKCθ), an enzyme known to be involved in immune response, in mdx, the mouse model of DMD, improves muscle healing and regeneration, preventing massive inflammation. To establish whether pharmacological targeting of PKCθ in DMD can be proposed as a therapeutic option, in this study we treated young mdx mice with the PKCθ inhibitor Compound 20 (C20). We show that C20 treatment led to a significant reduction in muscle damage associated with reduced immune cells infiltration, reduced inflammatory pathways activation, and maintained muscle regeneration. Importantly, C20 treatment is efficient in recovering muscle performance in mdx mice, by preserving muscle integrity. Together, these results provide proof of principle that pharmacological inhibition of PKCθ in DMD can be considered an attractive strategy to modulate immune response and prevent the progression of the disease.

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Cite This Study

Marrocco et al. (2017) studied Duchenne Muscular Dystrophy (DMD). PKCθ inhibitor Compound 20 (C20) was evaluated on muscle damage, immune cell infiltration, and muscle performance. Treatment with the PKCθ inhibitor Compound 20 in mdx mice significantly reduced muscle damage and inflammation, and recovered muscle performance by preserving muscle integrity.

synapsesocial.com/papers/6a96ac4231394ac286fbcd4bhttps://doi.org/10.1016/j.ebiom.2017.01.001
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