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Showing 1 to 4 of 4 for “"quiescent stem cells"”.

  1. Dissecting Molecular Mechanisms of Radioresistance Using in Vitro and in Vivo Brain Tumor Model Systems

    … treatment in subsets of GBM patients. The cancer stem cell hypothesis postulates that cancers are organized similar to endogenous stem cell compartments, composed of a self-renewing cancer stem cell and other more “differentiated”, non-stem progeny. To determine how key GBM mutations affect the …

    utswmed Repository record for Dissecting Molecular Mechanisms of Radioresistance Using in Vitro and in Vivo Brain Tumor Model Systems (opens in a new tab)

  2. Modelling chromatin dynamics in neural stem cell quiescence and reactivation

    Majority of adult mammalian neural stem cells are quiescent, remaining in an actively maintained state of cell cycle arrest. Quiescent and actively proliferating neural stem cells can be distinguished by their transcriptional state, however, the understanding of how these gene signatures are …

    cambridge Repository record for Modelling chromatin dynamics in neural stem cell quiescence and reactivation (opens in a new tab)

  3. Transcriptional functions of the corepressor Sin3A in skin

    Upon activation in epidermal stem cells, the proto-oncogene c-Myc triggers their exit from the stem cell compartment resulting in an increase in progenitor cell proliferation and an induction in terminal differentiation. Whether c-Myc plays a direct transcriptional role in epidermal stem cell …

    cambridge Repository record for Transcriptional functions of the corepressor Sin3A in skin (opens in a new tab)

  4. Investigating the role of cell-autonomous ROS status in the regulation of hippocampal neural precursor cells in adult mice

    … a continued recruitment of neural precursor cells (NPCs) into active cell cycle and their progressive transition into post-mitotic granule cells. These adult born neurons integrate into the existing circuitry and confer structural plasticity, which aids in key hippocampal functions. For …

    qucosa-diss