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Publications by Ariel Contreras
Electrical Stimuli Are Anti-Apoptotic in Skeletal Muscle via Extracellular ATP. Alteration of This Signal in MDX Mice Is a Likely Cause of Dystrophy
PLoS ONE
Multidisciplinary
Related publications
Myogenin Regulates Exercise Capacity but Is Dispensable for Skeletal Muscle Regeneration in Adult MDX Mice
PLoS ONE
Multidisciplinary
Aquaporin-4 Deficiency in Skeletal Muscle and Brain of Dystrophic MDX Mice
FASEB Journal
Biochemistry
Biotechnology
Genetics
Molecular Biology
Medicine
Satellite Cells and Utrophin Are Not Directly Correlated With the Degree of Skeletal Muscle Damage in MDX Mice
American Journal of Physiology - Cell Physiology
Physiology
Cell Biology
Mitigation of Muscular Dystrophy in Mice by SERCA Overexpression in Skeletal Muscle
Journal of Clinical Investigation
Medicine
Stac3 Is a Novel Regulator of Skeletal Muscle Development in Mice
PLoS ONE
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P2X7 Is a Scavenger Receptor for Apoptotic Cells in the Absence of Its Ligand, Extracellular ATP
Journal of Immunology
Allergy
Immunology
Muscle Structure Influences Utrophin Expression in MDX Mice
PLoS Genetics
Evolution
Ecology
Genetics
Molecular Biology
Cancer Research
Systematics
Behavior
Whole Body Periodic Acceleration Is an Effective Therapy to Ameliorate Muscular Dystrophy in MDX Mice
PLoS ONE
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Supplementation With a Selective Amino Acid Formula Ameliorates Muscular Dystrophy in MDX Mice
Scientific Reports
Multidisciplinary