Summary: Recent findings show that human fibroblasts can be directly programmed into functional neurons without passing via a proliferative stem cell intermediate. These findings open up the possibility of generating subtype-specific neurons of human origin for therapeutic use from fetal cell, from patients themselves, or from matched donors. In this study, we present an improved system for direct neural conversion of human fibroblasts. The neural reprogramming genes are regulated by the neuron-specific microRNA, miR-124, such that each cell turns off expression of the reprogramming genes once the cell has reached a stable neuronal fate. The regulated system can be combined with integrase-deficient vectors, providing a nonintegrative and se...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
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...
SummaryRecent findings show that human fibroblasts can be directly programmed into functional neuron...
SummaryThe promise of using reprogrammed human neurons for disease modeling and regenerative medicin...
Background: Human fibroblasts can be directly converted to several subtypes of neurons, but cortical...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Background: Human fibroblasts can be directly converted to several subtypes of neurons, but cortical...
Background: Human fibroblasts can be directly converted to several subtypes of neurons, but cortical...
Differentiation of human fibroblasts into functional neurons depends on the introduction of viral-me...
Direct reprogramming offers a unique approach by which to generate neural lineages for the study and...
SummaryThe promise of using reprogrammed human neurons for disease modeling and regenerative medicin...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
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...
SummaryRecent findings show that human fibroblasts can be directly programmed into functional neuron...
SummaryThe promise of using reprogrammed human neurons for disease modeling and regenerative medicin...
Background: Human fibroblasts can be directly converted to several subtypes of neurons, but cortical...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Background: Human fibroblasts can be directly converted to several subtypes of neurons, but cortical...
Background: Human fibroblasts can be directly converted to several subtypes of neurons, but cortical...
Differentiation of human fibroblasts into functional neurons depends on the introduction of viral-me...
Direct reprogramming offers a unique approach by which to generate neural lineages for the study and...
SummaryThe promise of using reprogrammed human neurons for disease modeling and regenerative medicin...
Direct conversion of human skin fibroblasts into induced neuronal (iN) cells has been recently achie...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...
Direct conversion of human fibroblasts into mature and functional neurons, termed induced neurons (i...
Direct conversion of somatic cells into neurons holds great promise for regenerative medicine. Howev...