Back

Positive Allosteric Modulation of the α5-GABAA receptors prevents neuronal atrophy and cognitive decline independently of tau tangle accumulation in the PS19 mouse model

Dharavath, R. N.; Bernardo, A.; Marceau-Linhares, C.; Marcotte, M.; Wong, K.; Pina-Leblanc, C.; Bouchet, A.; Sharmin, D.; Cook, J.; Pandey, K. P.; Prevot, T. D.; Sibille, E.

2024-09-12 neuroscience
10.1101/2024.09.07.611810 bioRxiv
Show abstract

BackgroundDysregulated Tau phosphorylation (p-Tau) is a hallmark of neurodegenerative disorders such as Alzheimers disease (AD) or frontotemporal dementia (FTD), resulting in neurofibrillary tangle accumulation, neuronal atrophy and cognitive impairment. Impaired somatostatin (SST) expression and reduced SST-expressing GABAergic neurons significantly contributes to AD-related pathophysiology and correlates with cognitive impairment. SST+ interneurons inhibit the dendrites of excitatory neurons in cortical layers and hippocampus, primarily through 5-GABA-A receptors, regulating cognitive function. Leveraging a newly developed small molecule that targets the 5-GABA-A receptors via positive allosteric modulation (5-PAM), we assessed its effects on p-Tau-related neuronal morphology, cognitive deficits and protein expression. MethodsIn the PS19 transgenic mouse model, we administered the 5-PAM, GL-II-73, either acutely or chronically at 3 and 6 months, corresponding to early and advanced stage of p-Tau accumulation. Golgi staining analyzed dendritic morphology and spine density in mice chronically exposed to 5-PAM. Western blotting was used to quantify p-tau and Tau expression. Spatial working memory was assessed using the Y-maze. ResultsChronic treatment at 3 and 6 months mitigated p-Tau-induced loss of spine density and reduced dendritic length. 5-PAM treatment did not affect p-tau levels. 5-PAM effectively reversed spatial working memory deficits induced by p-tau accumulation both acutely and chronically. Conclusions5-GABA-A receptor positive allosteric modulation displayed neurotrophic (spine and dendritic pathology) and procognitive (working memory) effects in the PS19 model, independently of p-Tau burden. This suggests a novel therapeutic strategy for p-Tau-related pathologies with both symptomatic and disease-modifying potential.

Matching journals

The top 10 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.