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A human skeletal muscle stem/myotube model reveals multiple signaling targets of cancer secretome in skeletal muscle.


ABSTRACT: Skeletal muscle dysfunction or reprogramming due to the effects of the cancer secretome is observed in multiple malignancies. Although mouse models are routinely used to study skeletal muscle defects in cancer, because of species specificity of certain cytokines/chemokines in the secretome, a human model system is required. Here, we establish simplified multiple skeletal muscle stem cell lines (hMuSCs), which can be differentiated into myotubes. Using single nuclei ATAC-seq (snATAC-seq) and RNA-seq (snRNA-seq), we document chromatin accessibility and transcriptomic changes associated with the transition of hMuSCs to myotubes. Cancer secretome accelerated stem to myotube differentiation, altered the alternative splicing machinery and increased inflammatory, glucocorticoid receptor, and woun

SUBMITTER: Wang R 

PROVIDER: S-EPMC10123345 | biostudies-literature | 2023 Apr

REPOSITORIES: biostudies-literature

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