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Rather than reverting cells back to a mature stage, transdifferentiation forces one mature cell type to convert to another.
Frontiers Mitochondria and Other Organelles in Neural Development and Their Potential as Therapeutic Targets in Neurodegenerative Diseases
Dedifferentiation, transdifferentiation and reprogramming: three routes to regeneration
Transdifferentiation via transcription factors or microRNAs: Current status and perspective - ScienceDirect
Jan Darvall (@26Jan_D) / X
Adult cell plasticity in vivo: de-differentiation and transdifferentiation are back in style
Better Cell Model? Transdifferentiated Neurons Capture AD-Like Changes
IJMS, Free Full-Text
Transdifferentiation: a new promise for neurodegenerative diseases
Frontiers The Yin and Yang of Immunity in Stem Cell Decision Guidance in Tissue Ecologies: An Infection Independent Perspective
Shaping the brain vasculature in development and disease in the single-cell era
Frontiers Astrocyte Reprogramming in Stroke: Opportunities and Challenges
Frontiers Direct Neuronal Reprogramming: Bridging the Gap Between Basic Science and Clinical Application
Functional skeletal muscle constructs from transdifferentiated human fibroblasts
Direct Conversion of Human Urine Cells to Neurons by Small Molecules
DNGR-1-tracing marks an ependymal cell subset with damage-responsive neural stem cell potential - ScienceDirect