[HTML][HTML] Loss of the neurodevelopmental disease-associated gene miR-146a impairs neural progenitor differentiation and causes learning and memory deficits

J Fregeac, S Moriceau, A Poli, LS Nguyen, F Oury… - Molecular autism, 2020 - Springer
Background Formation and maintenance of appropriate neural networks require tight
regulation of neural stem cell proliferation, differentiation, and neurogenesis. microRNAs …

[PDF][PDF] Loss of the neurodevelopmental disease-associated gene miR-146a impairs neural progenitor differentiation and causes learning and memory deficits

J Fregeac, S Moriceau, A Poli, LS Nguyen, F Oury… - Molecular …, 2020 - hal.science
Background: Formation and maintenance of appropriate neural networks require tight
regulation of neural stem cell proliferation, differentiation, and neurogenesis. microRNAs …

[HTML][HTML] Loss of the neurodevelopmental disease-associated gene miR-146a impairs neural progenitor differentiation and causes learning and memory deficits

J Fregeac, S Moriceau, A Poli, LS Nguyen… - Molecular …, 2020 - ncbi.nlm.nih.gov
Background Formation and maintenance of appropriate neural networks require tight
regulation of neural stem cell proliferation, differentiation, and neurogenesis. microRNAs …

[HTML][HTML] Loss of the neurodevelopmental disease-associated gene miR-146a impairs neural progenitor differentiation and causes learning and memory deficits

J Fregeac, S Moriceau, A Poli… - Molecular …, 2020 - molecularautism.biomedcentral.com
Formation and maintenance of appropriate neural networks require tight regulation of neural
stem cell proliferation, differentiation, and neurogenesis. microRNAs (miRNAs) play an …

Loss of the neurodevelopmental disease-associated gene miR-146a impairs neural progenitor differentiation and causes learning and memory deficits

J Fregeac, S Moriceau, A Poli, LS Nguyen… - Molecular …, 2020 - pubmed.ncbi.nlm.nih.gov
Background Formation and maintenance of appropriate neural networks require tight
regulation of neural stem cell proliferation, differentiation, and neurogenesis. microRNAs …

[PDF][PDF] Loss of the neurodevelopmental disease-associated gene miR-146a impairs neural progenitor differentiation and causes learning and memory deficits

J Fregeac, S Moriceau, A Poli, LS Nguyen, F Oury… - 2020 - academia.edu
Background: Formation and maintenance of appropriate neural networks require tight
regulation of neural stem cell proliferation, differentiation, and neurogenesis. microRNAs …

Loss of the neurodevelopmental disease-associated gene miR-146a impairs neural progenitor differentiation and causes learning and memory deficits.

J Fregeac, S Moriceau, A Poli, LS Nguyen… - Molecular …, 2020 - search.ebscohost.com
Background: Formation and maintenance of appropriate neural networks require tight
regulation of neural stem cell proliferation, differentiation, and neurogenesis. microRNAs …

Loss of the neurodevelopmental disease-associated gene miR-146a impairs neural progenitor differentiation and causes learning and memory deficits

J Fregeac, S Moriceau, A Poli, LS Nguyen, F Oury… - Molecular …, 2020 - go.gale.com
Background Formation and maintenance of appropriate neural networks require tight
regulation of neural stem cell proliferation, differentiation, and neurogenesis. microRNAs …

[PDF][PDF] Loss of the neurodevelopmental disease-associated gene miR-146a impairs neural progenitor differentiation and causes learning and memory deficits

J Fregeac, S Moriceau, A Poli, LS Nguyen, F Oury… - 2020 - scholar.archive.org
Background: Formation and maintenance of appropriate neural networks require tight
regulation of neural stem cell proliferation, differentiation, and neurogenesis. microRNAs …

Loss of the neurodevelopmental disease-associated gene miR-146a impairs neural progenitor differentiation and causes learning and memory deficits.

J Fregeac, S Moriceau, A Poli, LS Nguyen, F Oury… - Molecular …, 2020 - europepmc.org
Background Formation and maintenance of appropriate neural networks require tight
regulation of neural stem cell proliferation, differentiation, and neurogenesis. microRNAs …