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#myotubes — Public Fediverse posts

Live and recent posts from across the Fediverse tagged #myotubes, aggregated by home.social.

  1. "deletion of..Mitofusin2 (MFN2), which serves as a tether for MAM, in human induced pluripotent stem (iPS) cells or the reduction of MAM in differentiated #myotubes caused by microgravity..increased susceptibility to #muscle #atrophy, as well as the activation of..Notch..The atrophic phenotype..in microgravity & the regenerative capacity of Mfn2-deficient muscle stem cells in dystrophic mice were both ameliorated by treatment with the gamma-secretase inhibitor DAPT"

    elifesciences.org/articles/893

  2. "deletion of..Mitofusin2 (MFN2), which serves as a tether for MAM, in human induced pluripotent stem (iPS) cells or the reduction of MAM in differentiated #myotubes caused by microgravity..increased susceptibility to #muscle #atrophy, as well as the activation of..Notch..The atrophic phenotype..in microgravity & the regenerative capacity of Mfn2-deficient muscle stem cells in dystrophic mice were both ameliorated by treatment with the gamma-secretase inhibitor DAPT"

    elifesciences.org/articles/893

  3. "deletion of..Mitofusin2 (MFN2), which serves as a tether for MAM, in human induced pluripotent stem (iPS) cells or the reduction of MAM in differentiated #myotubes caused by microgravity..increased susceptibility to #muscle #atrophy, as well as the activation of..Notch..The atrophic phenotype..in microgravity & the regenerative capacity of Mfn2-deficient muscle stem cells in dystrophic mice were both ameliorated by treatment with the gamma-secretase inhibitor DAPT"

    elifesciences.org/articles/893

  4. "deletion of..Mitofusin2 (MFN2), which serves as a tether for MAM, in human induced pluripotent stem (iPS) cells or the reduction of MAM in differentiated #myotubes caused by microgravity..increased susceptibility to #muscle #atrophy, as well as the activation of..Notch..The atrophic phenotype..in microgravity & the regenerative capacity of Mfn2-deficient muscle stem cells in dystrophic mice were both ameliorated by treatment with the gamma-secretase inhibitor DAPT"

    elifesciences.org/articles/893

  5. "deletion of..Mitofusin2 (MFN2), which serves as a tether for MAM, in human induced pluripotent stem (iPS) cells or the reduction of MAM in differentiated #myotubes caused by microgravity..increased susceptibility to #muscle #atrophy, as well as the activation of..Notch..The atrophic phenotype..in microgravity & the regenerative capacity of Mfn2-deficient muscle stem cells in dystrophic mice were both ameliorated by treatment with the gamma-secretase inhibitor DAPT"

    elifesciences.org/articles/893

  6. Check out our latest complete issue that includes heaps of #OpenAccess science:

    🎇A cover featuring differentiated #myotubes derived from #FSHD patient cells
    🧠An Editorial that discusses how we can improve #mouse modelling of #Schizophrenia
    🧫A review on aneuploidy & #CellCompetition that explores their impact on #cancer
    👂🏼 A review on #InnerEar development & disease
    🐹🐭A #COVID19 model stand-off for the #EditorsChoice
    🧪And much more fantastic #biomedical research

    📘journals.biologists.com/dmm/is