Poor Repair of Skeletal Muscle in Aging Mice Reflects a Defect in

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Exercise enhances skeletal muscle regeneration by promoting senescence in fibro-adipogenic progenitors. - Abstract - Europe PMC

Characterizing the skeletal muscle immune microenvironment for sarcopenia using transcriptome analysis and histological validation

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Frontiers Recent Trends in Biofabrication Technologies for

Divergent Roles of Inflammation in Skeletal Muscle Recovery From

MRM Insights: Studying muscle stem cells within the context of their niche environment during development and diseases

Aged cells in human skeletal muscle after resistance exercise

Aging impairs skeletal muscle regeneration by promoting fibro/fatty degeneration and inhibiting inflammation resolution via fibro-adipogenic progenitors

IJMS, Free Full-Text

Characterizing the skeletal muscle immune microenvironment for sarcopenia using transcriptome analysis and histological validation

Human skeletal muscle ageing atlas

Characterization of cellular senescence in aging skeletal muscle

Aging impairs skeletal muscle regeneration by promoting fibro/fatty degeneration and inhibiting inflammation resolution via fibro-adipogenic progenitors

Matrix-bound nanovesicle-associated IL-33 supports functional recovery after skeletal muscle injury by initiating a pro-regenerative macrophage phenotypic transition

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