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Glycyrrhiza glabra exhibits disease-modifying effects in Alzheimer’s disease through restoration of mitochondrial function, synaptic plasticity, and kinase signaling

S. Amrutha, Manvitha Kadandelu, Murali Krishna Paidi, Shamprasad Varija Raghu and 2 more

Frontiers in Pharmacology | Aug 28, 2026

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Findings indicate that G. glabra treatment restores the expression of key proteins altered in AD pathology, suggesting a potential neuroprotective mechanism mediated through the regulation of the MEK/ERK-1/2, PI3K/AKT/GSK3β, and CDK5/p35/p25 pathways.

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Background Alzheimer’s disease (AD) is a progressive neurodegenerative disorder characterized by cognitive decline, memory impairment, and neuronal dysfunction. Current therapeutic treatments are limited to symptomatic relief and often cause significant adverse effects, underscoring the need for alternative medicinal approaches with potent neuroprotective efficacy and minimal side effects. Glycyrrhiza glabra , rich in major bioactive constituents such as Glycyrrhizic acid, glabridin, liquiritin, rhamnoliquirilin, liquiritigenin, and prenyllicoflavone A, has been historically used in Ayurveda and exhibits therapeutic potential; however, its efficacy in mitigating AD-associated pathological conditions remains poorly understood. Methods This study investigates the neuroprotective properties of G. glabra root extract in Aβ 42 -treated human neuroblastoma (IMR-32) cells and Aβ 42 -overexpressing Drosophila melanogaster transgenic flies. Various behavioral and molecular biology techniques were employed, including immunofluorescence, qRT-PCR, flow cytometry, and western blotting, to investigate the effects of G. glabra root extract. Results Our results demonstrated that Aβ 42 treatment induced aberrant alterations in several proteins associated with Alzheimer’s pathology, mitochondrial dysfunction, cell-cycle re-entry, and synaptic activity. Co-treatment with G. glabra extract restored these protein levels and mitigated Aβ 42 -induced hyperactivation of key signaling pathways. Furthermore, G. glabra attenuated Aβ 42 -induced apoptotic signaling, modulating pro- and anti-apoptotic protein expression profiles in both in vitro and in vivo models. Conclusion Our findings indicate that G. glabra treatment restores the expression of key proteins altered in AD pathology, suggesting a potential neuroprotective mechanism mediated through the regulation of the MEK/ERK-1/2, PI3K/AKT/GSK3β, and CDK5/p35/p25 pathways. This study provides a molecular rationale for the historical use of G. glabra , demonstrating its ability to rescue altered AD-associated protein markers in both cellular and Drosophila models. While further research is necessary to fully elucidate the neuroprotective mechanisms of G. glabra , these findings pave the way for downstream validation of the extract as a promising natural therapeutic candidate for Alzheimer’s disease.

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S. Amrutha

first | Yenepoya University

Manvitha Kadandelu

middle | Yenepoya University

Murali Krishna Paidi

middle | Yenepoya University

Shamprasad Varija Raghu

middle | Yenepoya University | ORCID 0000-0001-5537-1405

Thottethodi Subrahmanya Keshava Prasad

middle | Yenepoya University | ORCID 0000-0002-6206-2384

Prashant Kumar Modi

last | Yenepoya University | ORCID 0000-0002-4817-3379

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@article{Amrutha2026Glycyrrhiza,
  title = {Glycyrrhiza glabra exhibits disease-modifying effects in Alzheimer’s disease through restoration of mitochondrial function, synaptic plasticity, and kinase signaling},
  author = {S. Amrutha and Manvitha Kadandelu and Murali Krishna Paidi and Shamprasad Varija Raghu and Thottethodi Subrahmanya Keshava Prasad and Prashant Kumar Modi},
  journal = {Frontiers in Pharmacology},
  year = {2026},
  doi = {10.3389/fphar.2026.1894678},
  url = {https://doi.org/10.3389/fphar.2026.1894678}
}

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