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Silibinin and Naringenin Against Bisphenol A-Induced Neurotoxicity in Zebrafish Model—Potential Flavonoid Molecules for New Drug Design, Development, and Therapy for Neurological Disorders

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dc.contributor.author Thayumanavan, Geethanjali
dc.contributor.author Jeyabalan, Srikanth
dc.contributor.author Fuloria, Shivkanya
dc.contributor.author Sekar, Mahendran
dc.contributor.author Ravi, Monica
dc.contributor.author Selvaraj, Logesh Kumar
dc.contributor.author Bala, Logeshwari
dc.contributor.author Chidambaram, Kumarappan
dc.contributor.author Gan, Siew Hua
dc.contributor.author Nur Najihah Izzati Mat Rani
dc.contributor.author Begum, Yasmin
dc.contributor.author Subramaniyan, Vetriselvan
dc.contributor.author Sathasivam, Kathiresan V.
dc.contributor.author Meenakshi, Dhanalekshmi U.
dc.contributor.author Fuloria, Neeraj Kumar
dc.contributor.author (UniKL RCMP)
dc.date.accessioned 2024-01-03T03:37:17Z
dc.date.available 2024-01-03T03:37:17Z
dc.date.issued 2022-04
dc.identifier.citation Thayumanavan, G., Jeyabalan, S., Fuloria, S., Sekar, M., Ravi, M., Selvaraj, L. K., Bala, L., Chidambaram, K., Gan, S. H., Nur Najihah Izzati Mat Rani, Begum, M., Subramaniyan, V., Sathasivam, K. V., Meenakshi, D. U., & Fuloria, N. K. (2022). Silibinin and Naringenin against Bisphenol A-Induced Neurotoxicity in Zebrafish Model—Potential Flavonoid Molecules for New Drug Design, Development, and Therapy for Neurological Disorders. 27(8), 2572–2572. https://doi.org/10.3390/molecules27082572 en_US
dc.identifier.issn 14203049
dc.identifier.uri https://ir.unikl.edu.my/jspui/handle/123456789/29411
dc.description.abstract Bisphenol A (BPA), a well-known xenoestrogen, is commonly utilised in the production of polycarbonate plastics. Based on the existing evidence, BPA is known to induce neurotoxicity and behavioural issues. Flavonoids such as silibinin and naringenin have been shown to have biological activity against a variety of illnesses. The current research evaluates the neuropharmacological effects of silibinin and naringenin in a zebrafish model against neurotoxicity and oxidative stress caused by Bisphenol A. In this study, a novel tank diving test (NTDT) and light–dark preference test (LDPT) were used in neurobehavioural investigations. The experimental protocol was planned to last 21 days. The neuroprotective effects of silibinin (10 μM) and naringenin (10 μM) in zebrafish (Danio rerio) induced by BPA (17.52 μM) were investigated. In the brine shrimp lethality assay, the 50% fatal concentrations (LC50) were 34.10 μg/mL (silibinin) and 91.33 μg/mL (naringenin) compared to the standard potassium dichromate (13.15 μg/mL). The acute toxicity investigation found no mortality or visible abnormalities in the silibinin- and naringenin-treated groups (LC50 > 100 mg/L). The altered scototaxis behaviour in LDPT caused by BPA was reversed by co-supplementation with silibinin and naringenin, as shown by decreases in the number of transitions to the light zone and the duration spent in the light zone. Our findings point to BPA’s neurotoxic potential in causing altered scototaxis and bottom-dwelling behaviour in zebrafish, as well as the usage of silibinin and naringenin as potential neuroprotectants. en_US
dc.language.iso en en_US
dc.publisher MDPI en_US
dc.subject Bisphenol A en_US
dc.subject Zebrafish en_US
dc.subject Neurotoxicity en_US
dc.subject Silibinin en_US
dc.subject Naringenin en_US
dc.subject Neuroprotective en_US
dc.title Silibinin and Naringenin Against Bisphenol A-Induced Neurotoxicity in Zebrafish Model—Potential Flavonoid Molecules for New Drug Design, Development, and Therapy for Neurological Disorders en_US
dc.type Article en_US


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