Pierre Vanderhaeghen

Affiliations: 
University of Brussels ULB, Bruxelles, Bruxelles, Belgium 
 VIB KULeuven 
Area:
Developmental neurobiology
Website:
https://vib.be/labs/pierre-vanderhaeghen-lab
Google:
"Pierre Vanderhaeghen"
Bio:

https://pvdhlab.org/

Mean distance: 16.87 (cluster 11)
 
SNBCP
Cross-listing: Evolution Tree

BETA: Related publications

Publications

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Libé-Philippot B, Iwata R, Recupero AJ, et al. (2024) Synaptic neoteny of human cortical neurons requires species-specific balancing of SRGAP2-SYNGAP1 cross-inhibition. Neuron
Libé-Philippot B, Polleux F, Vanderhaeghen P. (2024) If you please, draw me a neuron - linking evolutionary tinkering with human neuron evolution. Current Opinion in Genetics & Development. 89: 102260
Assendorp N, Fossati M, Libé-Philippot B, et al. (2024) CTNND2 moderates the pace of synaptic maturation and links human evolution to synaptic neoteny. Cell Reports. 43: 114797
Wierda K, Nyitrai H, Lejeune A, et al. (2024) Protocol to process fresh human cerebral cortex biopsies for patch-clamp recording and immunostaining. Star Protocols. 5: 103313
Vermaercke B, Iwata R, Wierda K, et al. (2024) SYNGAP1 deficiency disrupts synaptic neoteny in xenotransplanted human cortical neurons in vivo. Neuron
Casimir P, Iwata R, Vanderhaeghen P. (2024) Linking mitochondria metabolism, developmental timing, and human brain evolution. Current Opinion in Genetics & Development. 86: 102182
Libé-Philippot B, Lejeune A, Wierda K, et al. (2023) LRRC37B is a human modifier of voltage-gated sodium channels and axon excitability in cortical neurons. Cell. 186: 5766-5783.e25
Atsumi Y, Iwata R, Kimura H, et al. (2023) Repetitive CREB-DNA interactions at gene loci predetermined by CBP induce activity-dependent gene expression in human cortical neurons. Cell Reports. 43: 113576
Vanderhaeghen P, Polleux F. (2023) Developmental mechanisms underlying the evolution of human cortical circuits. Nature Reviews. Neuroscience. 24: 213-232
Iwata R, Casimir P, Erkol E, et al. (2023) Mitochondria metabolism sets the species-specific tempo of neuronal development. Science (New York, N.Y.). 379: eabn4705
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