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Citations to this article

Genetic ablation of complement C3 attenuates muscle pathology in dysferlin-deficient mice
Renzhi Han, … , John A. Faulkner, Kevin P. Campbell
Renzhi Han, … , John A. Faulkner, Kevin P. Campbell
Published November 8, 2010
Citation Information: J Clin Invest. 2010;120(12):4366-4374. https://doi.org/10.1172/JCI42390.
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Research Article Muscle biology

Genetic ablation of complement C3 attenuates muscle pathology in dysferlin-deficient mice

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Abstract

Mutations in the dysferlin gene underlie a group of autosomal recessive muscle-wasting disorders denoted as dysferlinopathies. Dysferlin has been shown to play roles in muscle membrane repair and muscle regeneration, both of which require vesicle-membrane fusion. However, the mechanism by which muscle becomes dystrophic in these disorders remains poorly understood. Although muscle inflammation is widely recognized in dysferlinopathy and dysferlin is expressed in immune cells, the contribution of the immune system to the pathology of dysferlinopathy remains to be fully explored. Here, we show that the complement system plays an important role in muscle pathology in dysferlinopathy. Dysferlin deficiency led to increased expression of complement factors in muscle, while muscle-specific transgenic expression of dysferlin normalized the expression of complement factors and eliminated the dystrophic phenotype present in dysferlin-null mice. Furthermore, genetic disruption of the central component (C3) of the complement system ameliorated muscle pathology in dysferlin-deficient mice but had no significant beneficial effect in a genetically distinct model of muscular dystrophy, mdx mice. These results demonstrate that complement-mediated muscle injury is central to the pathogenesis of dysferlinopathy and suggest that targeting the complement system might serve as a therapeutic approach for this disease.

Authors

Renzhi Han, Ellie M. Frett, Jennifer R. Levy, Erik P. Rader, John D. Lueck, Dimple Bansal, Steven A. Moore, Rainer Ng, Daniel Beltrán-Valero de Bernabé, John A. Faulkner, Kevin P. Campbell

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2016 2015 2014 2013 2012 2011 2009 Total
Citations: 2 5 4 7 3 1 3 2 2 1 7 4 5 4 8 1 59
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Citations to this article (59)

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The Dysferlinopathies Conundrum: Clinical Spectra, Disease Mechanism and Genetic Approaches for Treatments.
Anwar S, Yokota T
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Pilot investigations into the mechanistic basis for adverse effects of glucocorticoids in dysferlinopathy
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Wang J, Fan Q, Yu T, Zhang Y
2021
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M van Putten, EM Lloyd, JC de Greef, V Raz, R Willmann, MD Grounds
Disease models & mechanisms 2020
Dysferlin-deficiency has greater impact on function of slow muscles, compared with fast, in aged BLAJ mice
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PloS one 2019
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