Recently, direct reprogramming between divergent lineages has been achieved by the introduction of regulatory transcription factors. This approach may provide alternative cell resources for drug discovery and regenerative medicine, but applications could be limited by the genetic manipulation involved. Here, we show that mouse fibroblasts can be directly converted into neuronal cells using only a cocktail of small molecules, with a yield of up to >90% being TUJ1-positive after 16 days of induction. After a further maturation stage, these chemically induced neurons (CiNs) possessed neuron-specific expression patterns, generated action potentials, and formed functional synapses. Mechanistically, we found that a BET family bromodomain inhib...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
The ability to generate transplantable neural cells in a large quantity in the laboratory is a crit...
Recent studies in which mouse and human fibroblasts were directly reprogrammed into functional neuro...
SummaryRecently, direct reprogramming between divergent lineages has been achieved by the introducti...
SummaryRecently, direct reprogramming between divergent lineages has been achieved by the introducti...
Copyright © 2016 Yan-Chuang Han et al. This is an open access article distributed under the Creative...
Although it is possible to generate neural stem cells (NSC) from somatic cells by reprogramming tech...
Copyright © 2016 Yan-Chuang Han et al. This is an open access article distributed under the Creati...
Cellular reprogramming using chemically defined conditions, without genetic manipulation, is a promi...
Direct lineage reprogramming, including with small molecules, has emerged as a promising approach fo...
SummaryNeuronal conversion from human fibroblasts can be induced by lineage-specific transcription f...
SummaryNeuronal conversion from human fibroblasts can be induced by lineage-specific transcription f...
Direct lineage conversion could provide a rich source of somatic cell types for translational medici...
Transdifferentiation, where differentiated cells are reprogrammed into another lineage without going...
SummaryRecent advances have suggested that direct induction of neural stem cells (NSCs) could provid...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
The ability to generate transplantable neural cells in a large quantity in the laboratory is a crit...
Recent studies in which mouse and human fibroblasts were directly reprogrammed into functional neuro...
SummaryRecently, direct reprogramming between divergent lineages has been achieved by the introducti...
SummaryRecently, direct reprogramming between divergent lineages has been achieved by the introducti...
Copyright © 2016 Yan-Chuang Han et al. This is an open access article distributed under the Creative...
Although it is possible to generate neural stem cells (NSC) from somatic cells by reprogramming tech...
Copyright © 2016 Yan-Chuang Han et al. This is an open access article distributed under the Creati...
Cellular reprogramming using chemically defined conditions, without genetic manipulation, is a promi...
Direct lineage reprogramming, including with small molecules, has emerged as a promising approach fo...
SummaryNeuronal conversion from human fibroblasts can be induced by lineage-specific transcription f...
SummaryNeuronal conversion from human fibroblasts can be induced by lineage-specific transcription f...
Direct lineage conversion could provide a rich source of somatic cell types for translational medici...
Transdifferentiation, where differentiated cells are reprogrammed into another lineage without going...
SummaryRecent advances have suggested that direct induction of neural stem cells (NSCs) could provid...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
The ability to generate transplantable neural cells in a large quantity in the laboratory is a crit...
Recent studies in which mouse and human fibroblasts were directly reprogrammed into functional neuro...