SummaryThe promise of using reprogrammed human neurons for disease modeling and regenerative medicine relies on the ability to induce patient-derived neurons with high efficiency and subtype specificity. We have previously shown that ectopic expression of brain-enriched microRNAs (miRNAs), miR-9/9∗ and miR-124 (miR-9/9∗-124), promoted direct conversion of human fibroblasts into neurons. Here we show that coexpression of miR-9/9∗-124 with transcription factors enriched in the developing striatum, BCL11B (also known as CTIP2), DLX1, DLX2, and MYT1L, can guide the conversion of human postnatal and adult fibroblasts into an enriched population of neurons analogous to striatal medium spiny neurons (MSNs). When transplanted in the mouse brain, th...
SummaryThe induction of pluripotency or trans-differentiation of one cell type to another can be acc...
The mammalian nervous system is composed of a multitude of distinct neuronal subtypes, each with its...
During direct cellular reprogramming, forced expression of key transcription factors (TFs) directly ...
SummaryThe promise of using reprogrammed human neurons for disease modeling and regenerative medicin...
SummaryHuman induced pluripotent stem cells (hiPSCs) have been generated by reprogramming a number o...
The use of transcriptional factors as cell fate regulators are often the primary focus in the direct...
In Huntington’s disease (HD), expansion of CAG codons within the huntingtin gene (HTT) leads to the ...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Obtaining differentiated cells with high physiological functions by an efficient, but simple and rap...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Summary: Recent findings show that human fibroblasts can be directly programmed into functional neur...
SummaryRecent findings show that human fibroblasts can be directly programmed into functional neuron...
Recent findings show that human fibroblasts can be directly programmed into functional neurons witho...
SummaryThe induction of pluripotency or trans-differentiation of one cell type to another can be acc...
The mammalian nervous system is composed of a multitude of distinct neuronal subtypes, each with its...
During direct cellular reprogramming, forced expression of key transcription factors (TFs) directly ...
SummaryThe promise of using reprogrammed human neurons for disease modeling and regenerative medicin...
SummaryHuman induced pluripotent stem cells (hiPSCs) have been generated by reprogramming a number o...
The use of transcriptional factors as cell fate regulators are often the primary focus in the direct...
In Huntington’s disease (HD), expansion of CAG codons within the huntingtin gene (HTT) leads to the ...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Obtaining differentiated cells with high physiological functions by an efficient, but simple and rap...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Summary: Recent findings show that human fibroblasts can be directly programmed into functional neur...
SummaryRecent findings show that human fibroblasts can be directly programmed into functional neuron...
Recent findings show that human fibroblasts can be directly programmed into functional neurons witho...
SummaryThe induction of pluripotency or trans-differentiation of one cell type to another can be acc...
The mammalian nervous system is composed of a multitude of distinct neuronal subtypes, each with its...
During direct cellular reprogramming, forced expression of key transcription factors (TFs) directly ...