Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achieved by using different combinations of transcription factors eventually associated with microRNAs. These findings lay the ground for a straightforward and efficient generation of human neurons in vitro with elaborated functional properties instrumental for disease modeling and cell-based approaches of brain repair
SummaryDirect lineage reprogramming is a promising approach for human disease modeling and regenerat...
Recently, direct reprogramming between divergent lineages has been achieved by the introduction of r...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
The use of transcriptional factors as cell fate regulators are often the primary focus in the direct...
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...
Summary: Recent findings show that human fibroblasts can be directly programmed into functional neur...
Recent reports have demonstrated that somatic cells can be directly converted to other differentiate...
Recent publications in Cell Stem Cell (Son et al., 2011; Ambasudhan et al., 2011), PNAS (Pfisterer e...
In recent years, the need to derive sources of specialized cell types to be employed for cell replac...
Background: Human fibroblasts can be directly converted to several subtypes of neurons, but cortical...
Obtaining differentiated cells with high physiological functions by an efficient, but simple and rap...
Direct reprogramming is an appealing strategy to generate neurons from a somatic cell by forced expr...
SummaryDirect lineage reprogramming is a promising approach for human disease modeling and regenerat...
Recently, direct reprogramming between divergent lineages has been achieved by the introduction of r...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
The use of transcriptional factors as cell fate regulators are often the primary focus in the direct...
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...
Summary: Recent findings show that human fibroblasts can be directly programmed into functional neur...
Recent reports have demonstrated that somatic cells can be directly converted to other differentiate...
Recent publications in Cell Stem Cell (Son et al., 2011; Ambasudhan et al., 2011), PNAS (Pfisterer e...
In recent years, the need to derive sources of specialized cell types to be employed for cell replac...
Background: Human fibroblasts can be directly converted to several subtypes of neurons, but cortical...
Obtaining differentiated cells with high physiological functions by an efficient, but simple and rap...
Direct reprogramming is an appealing strategy to generate neurons from a somatic cell by forced expr...
SummaryDirect lineage reprogramming is a promising approach for human disease modeling and regenerat...
Recently, direct reprogramming between divergent lineages has been achieved by the introduction of r...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...