Skip to content

Zonisamide Improves Cognitive Impairment and Psychiatric Symptoms related with SAPAP3 in Mouse Models of Alzheimer's Disease.

Aug 2026 · European Journal of Pharmacology · pp. 179279 · 0 citations · 89 references
Medicine

TL;DR

ZNS exerts neuroprotective effects in 5xFAD mice and improves AD-related cognitive impairment and AD-like lesions, which establishes ZNS as a promising therapeutic avenue for AD and its associated psychiatric symptoms.

Abstract

Background

Alzheimer's disease (AD) is characterized by pathological changes in Aβ&Tau, cognitive impairment, and may also manifest psychiatric symptoms. Zonisamide (ZNS) has been demonstrated its improvement of cognitive dysfunction in T2DM mice in our previous study. However, the efficacy and mechanism of ZNS in treating AD remain unclear.

Aim

We aims to investigate the therapeutic efficacy of ZNS for AD and its potential molecular mechanisms.

Methods

Three-month-old 5xFAD mice were treated with ZNS (20 mg/kg, i.p.) for 12-week. The behavioral test assesses cognitive function and psychiatric symptoms. Aβ-PET/CT, immunofluorescence, and Thioflavine-S stainin staining assessed the levels of Aβ plaques. Proteomics and Western blot analyses evaluated synapse-associated proteins, amyloid precursor protein (APP) related proteins and phosphorylated tau.

Results

We discovered for the first time that ZNS significantly improved spatial learning and memory, and also alleviated psychiatric symptoms in 5xFAD. Besides, ZNS increased PSD95, SYP, BDNF, and SAP90/PSD-95-related protein 3 (SAPAP3), which plays a crucial role in compulsive-like behaviors. Importantly, siRNA-mediated knockdown of SAPAP3 in N2A/APP cells inhibited the regulatory effect of ZNS on PSD95 and NMDAR2A (NR2A). In addition, ZNS treatment reduced Aβ deposition in the brain. It also downregulated APP, p-APP (Thr668), BACE1, and PS1, and attenuated tau phosphorylation at Ser396 by inhibiting its upstream kinase ERK1/2 activity.

Conclusion

ZNS exerts neuroprotective effects in 5xFAD mice and improves AD-related cognitive impairment and AD-like lesions, which establishes ZNS as a promising therapeutic avenue for AD and its associated psychiatric symptoms.

View source

Similar papers

Sep 2026

Triptolide preserves cognitive function and reduces hippocampal inflammation in a mouse model of Alzheimer's disease.

Alzheimer's disease (AD) is a prevalent neurodegenerative disorder that affects an estimated 50 million people worldwide. This remains a significant medical challenge. Despite the availability of numerous therapeutic agents, they are often only partially effective, highlighting the urgent need for the development of mo...

Xue-Hai Ma, Wei-Ming Li, Yu-Mei Ma et al. · 0 citations
Open access Sep 2026

Erinacine C Attenuates Alzheimer’s-like Pathology: A Study in APP/PS1 Mice and PC12 Cells

Investigation of the neuroprotective potential and associated signaling alterations of erinacine C using APP/PS1 transgenic mice and Aβ25-35-induced PC12 cells suggest that EC may mitigate cognitive impairment and neurodegeneration in parallel with alterations in the Akt/GSK3β/tau/caspase-3 signaling response.

Li-Yu Wang, Shu-Lan Yeh, Shih-Tien Hsu et al. · 0 citations
Open access Sep 2026

Catestatin peptide ameliorates tauopathy and amyloidogenesis via adrenergic inhibition.

Catestatin (CST), a CgA-derived peptide, is investigated for its role in modulating tauopathy and marked reductions in CST levels and an increase in Pancreastatin (PST) in the hippocampus and cortex of AD brains, as well as in the frontal cortex of CBD and the basal ganglia of PSP.

Suborno Jati, Satadeepa Kal, Daniel Muñoz-Mayorga et al. · 0 citations
Aug 2026

Vorinostat ameliorates cognitive impairment and Tau pathology in an AAV-P301L-Tau-induced tauopathy mouse model: insights into neuroinflammation and PI3K/AKT/GSK3β signaling.

Results indicate that SAHA can improve Tau-associated pathological alterations in an AAV-P301L-Tau-induced tauopathy model, and provide additional insights into the potential influence of biological sex on HDACi-based therapeutic strategies, although the molecular mechanisms underlying these differences require further...

Zhidan Shi, Xinyi Cheng, Chu Zhang et al. · 0 citations
Review Aug 2026

Neuropharmacological Interventions in Alzheimer’s Disease: Current and Emerging Approaches

Alzheimer’s Disease (AD) is a neurodegenerative disorder with progressive cognitive decline, β-amyloid plaques, neurofibrillary tangles, oxidative stress, and neuroinflammatory responses. So far, the pathogenesis of AD has been explained by the cholinergic hypothesis, amyloid cascade hypothesis, and tau protein dys...

Lalit Parihar, A. Singh, Sanjar Alam · 0 citations
Review Aug 2026

HMGB1 signalling in Alzheimer's disease: pathogenic roles and therapeutic prospects.

High mobility group box 1 (HMGB1) is a crucial modulator of neuroinflammation in AD, according to new research, and a viable treatment approach for reducing neuroinflammation and associated pathologies with AD is to target HMGB1-mediated signalling networks.

Prashant Tyagi, Sneha Kumari, Prajjwal Sharma et al. · 1 citation

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.