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Blarcamesine improves EEG biomarkers of cortical dysfunction in a mouse model of fragile X syndrome.

Created on 02 Oct 2026

Authors

Carrie R Jonak, Samantha A Assad, Devin K Binder, James Tran, Christopher U Missling, Walter E Kaufmann

Published in

Frontiers in pharmacology. Volume 17. Pages 1786406. Epub Sep 16, 2026.

Abstract

Fragile X syndrome (FXS) is the most common inherited form of intellectual disability and autism spectrum disorder. Previous studies in the Fmr1 knockout (KO) mouse model of FXS and affected individuals have identified common electroencephalographic (EEG) abnormalities, which constitute biomarkers of cortical dysfunction for drug treatments.
We evaluated the effects of three different doses of oral blarcamesine, a Sigma-1 receptor agonist (S1R), on FXS-relevant EEG biomarkers in Fmr1 KO mice utilizing a multielectrode array (MEA) on resting-state power (from delta to gamma frequencies) and network synchronization (inter-trial phase coherence [ITPC]) using three auditory stimulation paradigms (chirp, auditory steady-state response [ASSR] at 40 Hz and at 80 Hz).
Blarcamesine-treated Fmr1 KO mice showed dose-dependent modulation of EEG biomarkers across cortical regions. Resting-state EEG power was reduced across multiple frequency bands, including suppression of the FXS-distinctive elevation in the gamma band. Significant improvements in ITPC were observed in all cortical regions for chirp stimulation and 40 Hz ASSR, while modest improvements were seen for 80 Hz ASSR.
Altogether, these data demonstrate that blarcamesine modulates multiple EEG biomarkers of cortical dysfunction in Fmr1 KO mice. Given that these biomarkers are associated with fundamental neurophysiological mechanisms underlying cognitive and behavioral abnormalities, and are shared between FXS mouse models and affected individuals, these findings are consistent with previously characterized S1R-mediated pharmacological effects of blarcamesine. These data support further investigation of blarcamesine's clinical potential in FXS and other neurodevelopmental disorders.

PMID:
42819592
Bibliographic data and abstract were imported from PubMed on 02 Oct 2026.

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