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- W3135302562 abstract "Abstract In mammals, many organs lack robust regenerative abilities. Lost cells in impaired tissue could potentially be compensated by converting nearby cells in situ through in vivo reprogramming. Small molecule-induced cell reprogramming offers a temporally flexible and non-integrative strategy for altering cell fate, which is, in principle, favorable for in vivo reprogramming in organs with notoriously poor regenerative abilities, such as the brain. Here, we demonstrate that in the adult mouse brain, small molecules can reprogram astrocytes into neurons. The in situ chemically induced neurons resemble endogenous neurons in terms of neuron-specific marker expression, electrophysiological properties, and synaptic connectivity. Our study demonstrates the feasibility of in vivo chemical reprogramming in the adult mouse brain and provides a potential approach for developing neuronal replacement therapies." @default.
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- W3135302562 date "2021-03-02" @default.
- W3135302562 modified "2023-10-11" @default.
- W3135302562 title "In vivo chemical reprogramming of astrocytes into neurons" @default.
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- W3135302562 doi "https://doi.org/10.1038/s41421-021-00243-8" @default.
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