ArticleNeurochemical research2025
Glycyrrhizic Acid Mitigates Haloperidol-Induced Neurotoxicity in SHSY-5Y Cells and Rats Via Activation of PI3k/Akt/Nrf2 Pathways.
Article in Neurochemical research, 2025. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 8 papers.
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Who cites it
8 citing papers in PubMed.
- Dietary phytoestrogen ameliorates ovarian toxicant-induced neurotoxicity: mechanistic and metabolic insights.Naunyn-Schmiedeberg's archives of pharmacology · 2026Article
- Nrf2 Activators in Parkinson's Disease: Modulating Mitophagy and Regulating Cuproptosis.Molecular neurobiology · 2026Review
- Exercise-Driven NRF2 Activation as a Systemic Neuroprotective Strategy: Integrating Redox Biology, Muscle-Brain Crosstalk, and Therapeutic Targeting in Neurodegeneration.Biochemical genetics · 2026Review
- PKM2-driven glycolysis mediates rotenone neurotoxicity via MG-Hs in Parkinson's disease.Scientific reports · 2026Article
- TTP protects against 6-OHDA-induced dopaminergic neurodegeneration via astrocytic Nrf2/HO-1 activation in cellular and rat models of Parkinson's disease.Metabolic brain disease · 2026Article
- Role of Pentacyclic Triterpenes in the Management of Neurological Disorders: An Insight into Molecular Mechanisms and Therapeutic Approaches.Molecular neurobiology · 2026Review
- Phytomedicines in preclinical and clinical research on antipsychotics-induced EPS/EPS-like behaviors: therapeutic effects and neurobiological mechanisms.Frontiers in psychiatry · 2026Review
- Co-treatment Strategy Supports Neuroprotection by Intersecting p62-Keap1-NRF2 and Autophagy Signaling Pathways in the Cellular Model of Parkinson's Disease.Cellular and molecular neurobiology · 2025Article
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Authors and funding
6 authors.
Funding
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Abstract
Antipsychotic medications are used to treat a psychological condition called 'Schizophrenia'. However, its long-term administration causes irregular involuntary motor movements, targeting the orofacial regions. Glycyrrhizic acid (GA) is a naturally occurring triterpene saponin glycoside obtained from the roots of the Glycyrrhiza glabra (liquorice) plant and well known for its antioxidant, antiapoptotic and neuroprotective abilities. The present study investigated the neuroprotective potential of GA against haloperidol (Halo) induced neurotoxicity in SHSY-5Y cells and Wistar rats. Schrodinger software was utilized to estimate the target binding affinity of GA with various targets. To assess cell viability, SHSY-5Y cells were pretreated with GA (25, 50, and 100 µM) 1 h before halo (100 µM) treatment. In an in-vivo study, Wistar rats were divided into five groups: control (saline), halo (1 mg/kg), GA (25 mg/kg), and GA (50 mg/kg). The GA was injected for 21 days, 1 h before halo. All behavior changes were recorded on the 14th and 21st days. Results indicate that pretreatment with GA improves cell viability and reduces ROS formation in halo-treated SHSY-5Y cells, showing its antioxidant ability. Furthermore, GA administration reduced vacuous chewing movements, tongue protrusion, facial jerking, and locomotor abnormalities in halo-treated rats. Moreover, GA treatment improves antioxidant levels, including GSH, and SOD, in halo-injected rats. Additionally, GA treatment upregulates the striatal expression of p-PI3k, p-Akt, and Nrf2 in rats injected with halo. Findings indicate that GA can be a therapeutic agent for tardive dyskinesia and other neurological disorders.
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