Browse our latest Stem Cells and Regenerative Medicine articles

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    1. Developmental Biology
    2. Stem Cells and Regenerative Medicine

    Neural control of growth and size in the axolotl limb regenerate

    Kaylee M Wells, Kristina Kelley ... Catherine D McCusker
    Signaling from the limb nerves regulates the rate of growth and the overall size of the regenerating limb.
    1. Developmental Biology
    2. Stem Cells and Regenerative Medicine

    Regeneration: A matter of nerves

    Timothy J Duerr, James R Monaghan
    Regrowing new body parts requires neural input to restore appropriately sized limbs in salamanders.
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    1. Stem Cells and Regenerative Medicine

    External signals regulate continuous transcriptional states in hematopoietic stem cells

    Eva M Fast, Audrey Sporrij ... Leonard I Zon
    In vivo modulation of the prostaglandin, interferon, or granulocyte colony-stimulating factor pathway induces rapid and specific transcriptional changes in hematopoietic stem cells with significant heterogeneity in the cellular response.
    1. Cell Biology
    2. Stem Cells and Regenerative Medicine

    Modeling the ACVR1R206H mutation in human skeletal muscle stem cells

    Emilie Barruet, Steven M Garcia ... Edward C Hsiao
    Novel human iPS cell derived and primary skeletal muscle stem cells show that abnormal ACVR1 activation increases osteogenic/ECM gene expression and impairs myofiber repair, while revealing muscle-specific regenerative properties.
    1. Developmental Biology
    2. Stem Cells and Regenerative Medicine

    Altered temporal sequence of transcriptional regulators in the generation of human cerebellar granule cells

    Hourinaz Behesti, Arif Kocabas ... Mary E Hatten
    Human pluripotent stem cell modeling of the ATOH1 lineage identifies a temporal shift in the expression of key transcriptional regulators in the developing human cerebellum, this molecular divergence may drive the protracted development of the human cerebellum compared to rodents.
    1. Cell Biology
    2. Stem Cells and Regenerative Medicine

    Phases of cortical actomyosin dynamics coupled to the neuroblast polarity cycle

    Chet Huan Oon, Kenneth E Prehoda
    Oon and Prehoda discover cortical actomyosin dynamics that polarize asymmetrically dividing neural stem cells.
    1. Cell Biology
    2. Stem Cells and Regenerative Medicine

    The IRE1/XBP1 signaling axis promotes skeletal muscle regeneration through a cell non-autonomous mechanism

    Anirban Roy, Meiricris Tomaz da Silva ... Ashok Kumar
    The IRE1/XBP1 signaling in myofibers is essential for robust skeletal muscle regeneration in response to injury.
    1. Cell Biology
    2. Stem Cells and Regenerative Medicine

    Human Erbb2-induced Erk activity robustly stimulates cycling and functional remodeling of rat and human cardiomyocytes

    Nicholas Strash, Sophia DeLuca ... Nenad Bursac
    Comparative analysis of cardiac mitogenic pathways identified a potent human gene that is effective at driving in vitro cell cycle activation across species and cell culture systems.
    1. Developmental Biology
    2. Stem Cells and Regenerative Medicine

    Adult stem cells and niche cells segregate gradually from common precursors that build the adult Drosophila ovary during pupal development

    Amy Reilein, Helen V Kogan ... Daniel Kalderon
    Somatic stem and niche cells in the Drosophila ovary develop from common precursors through regulated proliferative expansion, followed by acquisition of position-specific behaviors, rather than through rigid early specification events.
    1. Developmental Biology
    2. Stem Cells and Regenerative Medicine

    Retinoic acid signaling is directly activated in cardiomyocytes and protects mouse hearts from apoptosis after myocardial infarction

    Fabio Da Silva, Fariba Jian Motamedi ... Andreas Schedl
    Lineage tracing and genetic experiments resolve a long-standing controversy by showing that retinoic acid signaling is active in cardiomyocytes, both during development and after myocardial infarction, and protects damaged hearts from apoptosis.