Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (iNs), was achieved for the first time 6 years ago. This technology offers a promising shortcut for obtaining patient- and disease-specific neurons for disease modeling, drug screening, and other biomedical applications. However, fibroblasts from adult donors do not reprogram as easily as fetal donors, and no current reprogramming approach is sufficiently efficient to allow the use of this technology using patient-derived material for large-scale applications. Here, we investigate the difference in reprogramming requirements between fetal and adult human fibroblasts and identify REST as a major reprogramming barrier in adult fibroblasts. Via fu...
SummaryHuman induced pluripotent stem cells (hiPSCs) have been generated by reprogramming a number o...
The loss of neurons due to injury and disease results in a wide spectrum of highly disabling neurolo...
Aging is a major risk factor in many forms of late-onset neurodegenerative disorders. The ability to...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
SummaryThe promise of using reprogrammed human neurons for disease modeling and regenerative medicin...
Induced neurons (iNs) are somatic cells that are directly converted to change their fate into neuro...
Aging is a major risk factor in many forms of late-onset neurodegenerative disorders. The ability to...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
Direct neuronal reprogramming can be achieved using different approaches: by expressing neuronal tra...
The use of transcriptional factors as cell fate regulators are often the primary focus in the direct...
SummaryRecent findings show that human fibroblasts can be directly programmed into functional neuron...
Summary: Recent findings show that human fibroblasts can be directly programmed into functional neur...
Recent findings show that human fibroblasts can be directly programmed into functional neurons witho...
Direct reprogramming is an appealing strategy to generate neurons from a somatic cell by forced expr...
SummaryHuman induced pluripotent stem cells (hiPSCs) have been generated by reprogramming a number o...
The loss of neurons due to injury and disease results in a wide spectrum of highly disabling neurolo...
Aging is a major risk factor in many forms of late-onset neurodegenerative disorders. The ability to...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
SummaryThe promise of using reprogrammed human neurons for disease modeling and regenerative medicin...
Induced neurons (iNs) are somatic cells that are directly converted to change their fate into neuro...
Aging is a major risk factor in many forms of late-onset neurodegenerative disorders. The ability to...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
Direct neuronal reprogramming can be achieved using different approaches: by expressing neuronal tra...
The use of transcriptional factors as cell fate regulators are often the primary focus in the direct...
SummaryRecent findings show that human fibroblasts can be directly programmed into functional neuron...
Summary: Recent findings show that human fibroblasts can be directly programmed into functional neur...
Recent findings show that human fibroblasts can be directly programmed into functional neurons witho...
Direct reprogramming is an appealing strategy to generate neurons from a somatic cell by forced expr...
SummaryHuman induced pluripotent stem cells (hiPSCs) have been generated by reprogramming a number o...
The loss of neurons due to injury and disease results in a wide spectrum of highly disabling neurolo...
Aging is a major risk factor in many forms of late-onset neurodegenerative disorders. The ability to...