Billets de Michelle Dawson

Billet publié sur Twitter/X le 03/07/2021 11:19

Twitter/X Publication avec DOI crossref Extrait cité dans le billet Question posée par Dawson dans le billet Lien intégré au billet Termes sur l’autisme

Liens cités structurés

1 ressource citée

Publication avec DOI Récupéré Publication crossref

Michael J Hurley, Robert M J Deacon, A W Edith Chan, David Baker, David L Selwood, Patricia Cogram (2022). Reversal of behavioural phenotype by the cannabinoid-like compound VSN16R in fragile X syndrome mice. Brain, 145(1), 76-82. Oxford University Press (OUP).

Date de publication
01/07/2021
Identifiant
10.1093/brain/awab246
Auteurs
Michael J Hurley, Robert M J Deacon, A W Edith Chan, David Baker, David L Selwood, Patricia Cogram
Source
Brain
Détails
145(1), 76-82
Type de référence
article
Éditeur
Oxford University Press (OUP)
Source de métadonnées
crossref

Résumé

Abstract Fragile X syndrome is the most common inherited intellectual disability and mono-genetic cause of autism spectrum disorder. It is a neurodevelopmental condition occurring due to a CGG trinucleotide expansion in the FMR1 gene. Polymorphisms and variants in large-conductance calcium-activated potassium channels are increasingly linked to intellectual disability and loss of FMR protein causes reduced large-conductance calcium-activated potassium channel activity leading to abnormalities in synapse function. Using the cannabinoid-like large-conductance calcium-activated potassium channel activator VSN16R we rescued behavioural deficits such as repetitive behaviour, hippocampal dependent tests of daily living, hyperactivity and memory in a mouse model of fragile X syndrome. VSN16R has been shown to be safe in a phase 1 study in healthy volunteers and in a phase 2 study in patients with multiple sclerosis with high oral bioavailability and no serious adverse effects reported. VSN16R could therefore be directly utilized in a fragile X syndrome clinical study. Moreover, VSN16R showed no evidence of tolerance, which strongly suggests that chronic VSN16R may have great therapeutic value for fragile X syndrome and autism spectrum disorder. This study provides new insight into the pathophysiology of fragile X syndrome and identifies a new pathway for drug intervention for this debilitating disorder.

Auteur·ices de l’étude dans cette référence citée