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Combination S100A1 and ARC gene therapy as a treatment for Duchenne muscular dystrophy cardiomyopathy
David W. Hammers, Cora C. Hart, Eli Zerpa, Karen I. Laurent, Young il Lee, Meg M. Sleeper, H. Lee Sweeney
David W. Hammers, Cora C. Hart, Eli Zerpa, Karen I. Laurent, Young il Lee, Meg M. Sleeper, H. Lee Sweeney
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Research Article Cardiology Muscle biology

Combination S100A1 and ARC gene therapy as a treatment for Duchenne muscular dystrophy cardiomyopathy

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Abstract

Duchenne muscular dystrophy (DMD) is a lethal pediatric striated muscle disease caused by loss of dystrophin for which there is no cure. Cardiomyopathy is the leading cause of death among individuals with DMD, and effective therapeutics to treat DMD cardiomyopathy are a major unmet clinical need. This work investigated adeno-associated viral (AAV) gene therapy approaches to treat DMD cardiomyopathy by overexpression of the calcium binding proteins S100A1 and apoptosis repressor with caspase recruitment domain (ARC). Using the severe D2.mdx mouse model of DMD, we identified that S100A1 gene therapy improves the diastolic dysfunction associated with DMD cardiomyopathy, whereas ARC gene therapy prolongs survival. The combination of S100A1 and ARC in a single bicistronic vector improves the long-term cardiac outcome and histopathology of D2.mdx mice and the development of heart failure caused by micro-dystrophin expression, and its safety was exhibited via intracoronary delivery in a canine model of DMD. In addition to robust cardiac benefits, S100A1-ARC gene therapy benefits D2.mdx skeletal muscle function and histopathology when driven by a striated muscle promoter. Together, these findings indicate that S100A1-ARC gene therapy represents an effective treatment for DMD cardiomyopathy and may have therapeutic benefits in treating other forms of cardiomyopathy and muscle pathologies.

Authors

David W. Hammers, Cora C. Hart, Eli Zerpa, Karen I. Laurent, Young il Lee, Meg M. Sleeper, H. Lee Sweeney

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Figure 3

Therapeutic effect of S100A1 and ARC in D2.mdx mouse hearts.

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Therapeutic effect of S100A1 and ARC in D2.mdx mouse hearts.
(A) Male D2...
(A) Male D2.mdx received systemic treatment with 6.33 × 1013 gc/kg scAAVrh10.cTnT vector containing the coding sequence for either S100A1 (n = 6) or ARC (n = 16) at 1 month of age and underwent echocardiography at the 12-month and 18–22-month time points. Control D2.mdx mice (Con; n = 10) were included in this cohort for survival analysis, whereas additional control values are included in echocardiography measurements. (B) Mouse survival is depicted in a Kaplan-Meier plot. (C) Representative images of LV histopathology as visualized by H&E and Picrosirius red (PSR) staining (scale bar: 100 μm) and (D) fibrosis quantification. Echocardiography determined values for (E) ejection fraction, (F) end diastolic volume, (G) stroke volume, and (H) mitral valve (MV) E/A ratio for 12-month and 18–22-month time points. Data are displayed as (B) survival curve and (D–H) violin plots (individual values indicated by circles; means indicated by black diamonds). Data were analyzed using (A) Kaplan-Meier estimate followed by Wilcoxon’s nonparametric comparison test (α = 0.05; *P < 0.0001 vs. Con survival) and (D–H) 1-factor ANOVA (age and treatment effects) followed by multiple t tests with Bonferroni’s correction (α = 0.05; *P < 0.05 vs. age-matched Con values; significant P values are indicated).

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