24 citations
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May 2019 in “PLOS ONE” In this study, researchers observed that African spiny mice, Acomys cahirinus, are capable of regenerating skeletal muscle in dermal wound sites, unlike common mice, Mus musculus.
48 citations
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May 2023 in “Nature Communications” In a study on muscle regeneration in mice, researchers found that platelet-secreted CXCL7 is crucial for recruiting neutrophils to injury sites, aiding early muscle repair and optimal regrowth, suggesting potential therapeutic uses for boosting muscle healing.
4 citations
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January 2021 in “Current Research in Physiology” This study found that high levels of μ-crystallin in skeletal muscle are associated with greater fat metabolism and a shift in gene expression towards slower muscle function.
July 2026 in “Pharmaceuticals” This review examined mechanisms regulating muscle repair, highlighting disruptions in aging and chronic diseases like Duchenne muscular dystrophy and diabetes. It noted that chronic inflammation and metabolic dysfunction hinder effective regeneration and discussed emerging therapies, suggesting multi-target approaches could be promising despite limited clinical evidence.
April 2018 in “Dermatologic Surgery” This overview describes the Dermatologic Surgery journal's comprehensive coverage of dermatologic surgical procedures, but it reports no new research findings.