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Expansion of the neocortex and protection from neurodegeneration by in vivo transient reprogramming

Shen, Y.-R.; Zaballa, S.; Bech, X.; Sancho-Balsells, A.; Diaz-Cifuentes, C.; Seyit-Bremer, G.; Ballasch, I.; Alcazar, N.; Alberch, J.; Abad, M.; Serrano, M.; Klein, R.; Giralt, A.; del Toro, D.

2023-11-27 neuroscience
10.1101/2023.11.27.568858 bioRxiv
Show abstract

Yamanaka factors (YFs) can reverse some aging features in mammalian tissues, but their effects on the brain remain largely unexplored. Here, we induced YFs in the mouse brain in a controlled spatio-temporal manner in two different scenarios: brain development, and adult stages in the context of neurodegeneration. Embryonic induction of YFs perturbed cell identity of both progenitors and neurons, but transient and low-level expression is tolerated by these cells during development. Under these conditions, YFs induction led to expanded neurogenesis, increased number of upper cortical neurons, and enhanced motor and social behavior of adult mice. Additionally, controlled YF induction is tolerated by principal neurons in the adult dorsal hippocampus and prevented the development of several hallmarks of Alzheimers disease, including cognitive decline and altered molecular signatures, in the 5xFAD mouse model. Overall, these results highlight the powerful impact of YFs on neurogenesis and their potential use in brain disorders. HighlightsO_LITransient Yamanaka factor (YF) expression during development expands neocortex C_LIO_LIYF-treated mice show enhanced cognitive skills C_LIO_LIIntermitent YF expression is tolerated by adult principal hippocampal neurons C_LIO_LILong-term intermitent YF reprogramming is protective in an AD mouse model C_LI

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