Global ETD Search

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Showing 1 to 3 of 3 for “"retinal organoids"”.

  1. MODELLING RIBOFLAVIN TRANSPORTER DEFICIENCY (RTD) USING IPSC-DERIVED MODELS TO TEST GENE THERAPY EFFICACY

    … models through 2D motoneurons, spinal cord and retinal organoid differentiation of RTD patients-specific induced pluripotent (iPSC) line carrying several mutations in SLC52A2 gene. First, we tested gene replacement therapy on RTD type 2 patient-derived motoneurons using an adeno-associated viral …

    milano Repository record for MODELLING RIBOFLAVIN TRANSPORTER DEFICIENCY (RTD) USING IPSC-DERIVED MODELS TO TEST GENE THERAPY EFFICACY (opens in a new tab)

  2. Small-Molecule Activation of Yap for Inner-Ear Regeneration – and Beyond

    … murine cardiomyocytes, and human Müller glia in retinal organoids. The compound promotes the initial stages of the proliferative regeneration of hair cells, a process thought to be permanently suppressed in the adult mammalian inner ear. In conjunction with the Tri- Institutional Therapeutics …

    rockefeller Repository record for Small-Molecule Activation of Yap for Inner-Ear Regeneration – and Beyond (opens in a new tab)

  3. Investigating Cellular and Molecular Mechanisms of Neuronal Layering in Self-Organising Aggregates of Zebrafish Retinal Cells

    … neuronal types organised into distinct layers: Retinal Ganglion Cell (RGC), Amacrine Cell (AC), Bipolar Cell (BP), Horizontal Cell (HC) and Photoreceptor cell (PR) layers. This remarkable organisation is evolutionarily conserved in vertebrates, yet little is known about the mechanisms by which …

    cambridge Repository record for Investigating Cellular and Molecular Mechanisms of Neuronal Layering in Self-Organising Aggregates of Zebrafish Retinal Cells (opens in a new tab)