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Human neurons engineered from induced pluripotent stem cells (iPSCs) through Neurogenin 2 (Ngn2) overexpression are widely used to study neuronal differentiation mechanisms and to model neurological diseases. However, the differentiation paths and heterogeneity of emerged neurons have not been fully...
ORGANISM(S): Homo sapiens 
We generated induced excitatory sensory neurons (iNeurons, iNs) from pluripotent stem cells of great apes (Human, Chimpanzee and Bonobo) by expressing the transcription factor neurogenin 2 (Ngn2). Single cell-RNA sequencing was performed to identify gene expressions differing in dendrite and synapse...
ORGANISM(S): Pan paniscus 
Ngn2 induces diverse neuronal lineages from human pluripotency
Human fibroblasts can be directly converted into cholinergic neurons by Neurogenin 2 (Neurog2 or NGN2) under the treatments of small molecules. Genome-wide analysis of gene expression was performed to examine the similarity of converted neurons to samples from human brain or spinal cord. Total RNA o...
ORGANISM(S): Homo sapiens 
Testing effects of cell density on NGN2 iN transcriptom
iPSC-derived neuronal cultures can provide valuable insights into the pathogenesis of neurological disease. However, single cell iPSC clones with NGN2 and mCherry show spontaneous loss of mCherry fluorescence, leading to questions about the homogeneity of neurons derived from apparently heterogeneou...
ORGANISM(S): Ipscs Homo Sapiens (ncbitaxon:9606) 
2025-06-19 | MSV000098268 | MassIVE
The proneural NEUROG2 is essential for neuronal commitment, cell cycle exit and neuronal differentiation. Characterizing genes networks regulated downstream of NEUROG2 is therefore of prime importance. To identify NEUROG2 early response genes, we combined gain of function in the neural tube with a g...
ORGANISM(S): Gallus gallus 
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