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Showing 1 to 4 of 4 for “"skeletal myoblast"”.

  1. A study of bioprocess designs for development of the myogenic secretome as a source of bioactive extracellular vesicles

    The human skeletal muscle myoblasts (HSMM) secretome decreases cytokine-induced inflammation in chondrocytes, indicating potential as therapy for arthritis. The lack of an efficient scalable workflow for the human skeletal myoblast secretome limits its development as a source of therapeutic …

    wlv Repository record for A study of bioprocess designs for development of the myogenic secretome as a source of bioactive extracellular vesicles (opens in a new tab)

  2. Ruolo della fosfolipasi C-β1 nel differenziamento miogenico: identificazione di nuovi target nucleari

    … (PLC-β1) and cyclin D3 is highly induced during skeletal myoblast differentiation. We have previously shown that PLC-β1 activates cyclin D3 promoter during the differentiation of myoblasts to myotubes, indicating that PLC-β1 is a crucial regulator of mouse cyclin D3 gene. Here we report that …

    bologna Repository record for Ruolo della fosfolipasi C-β1 nel differenziamento miogenico: identificazione di nuovi target nucleari (opens in a new tab)

  3. Regulation Of Cyclic-amp-dependent Protein Kinases During Skeletal Myogenesis

    L6 myoblasts are a permanent rat skeletal myoblast cell line which differentiates in culture to form multinucleate myotubes. The regulation of the levels of cAMP-dependent protein kinases during myogenesis in L6 was studied, as these enzymes have been proposed to be involved in the control of this …

    uwo Repository record for Regulation Of Cyclic-amp-dependent Protein Kinases During Skeletal Myogenesis (opens in a new tab)

  4. Role of MicroRNAs in Human Skeletal Muscle Tissue Engineering In Vitro

    … of a functional tissue-engineered human skeletal muscle model in vitro would provide an excellent platform on which to study the process of myogenesis, various musculoskeletal disease states, and drugs and therapies for muscle toxicity. We developed a protocol to culture human skeletal

    duke Repository record for Role of MicroRNAs in Human Skeletal Muscle Tissue Engineering In Vitro (opens in a new tab)