4-Methylbenzylidene camphor induced neurobehavioral toxicity in zebrafish (Danio rerio) embryos

4-Methylbenzylidene camphor (4-MBC) is a widely used organic UV filter in personal care products. Extensive use of 4-MBC and its frequent detection in aquatic ecosystems defile the biota with muscular and neuronal impairments. This study investigates the neurobehavioral toxicity of 4-MBC using Danio...

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Veröffentlicht in:Environmental research 2024-02, Vol.242, p.117746-117746, Article 117746
Hauptverfasser: Prakash, Ved, Chauhan, Shweta Singh, Ansari, Mohammad Imran, Jagdale, Pankaj, Ayanur, Anjaneya, Parthasarathi, Ramakrishnan, Anbumani, Sadasivam
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Sprache:eng
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Zusammenfassung:4-Methylbenzylidene camphor (4-MBC) is a widely used organic UV filter in personal care products. Extensive use of 4-MBC and its frequent detection in aquatic ecosystems defile the biota with muscular and neuronal impairments. This study investigates the neurobehavioral toxicity of 4-MBC using Danio rerio as a model organism. Embryos were exposed semi-statically to 4-MBC at 5, 50, and 500 μg/L concentrations for 10-day post fertilization (dpf). Embryos exhibited a significant thigmotaxis and decreased startle touch response with altered expression of nervous system mRNA transcripts on 5 & 10 dpf. Compared to the sham-exposed group, 4-MBC treated larvae exhibited changes in the expression of shha, ngn1, mbp, elavl3, α1-tubulin, syn2a, and gap43 genes. Since ngn1 induction is mediated by shh signaling during sensory neuron specification, the elevated protein expression of NGN1 indicates 4-MBC interference in the sonic hedgehog signaling pathway. This leads to sensory neuron impairment and function such as ‘sense’ as evident from reduced touch response. In addition, larval brain histology with a reduced number of cells in the Purkinje layer emblazing the defunct motor coordination. Predictive toxicity study also showed a higher affinity of 4-MBC to modeled Shh protein. Thus, the findings of the present work highlighted that 4-MBC is potential to induce developmental neurotoxicity at both behavioral and molecular functional perspectives, and developing D. rerio larvae could be considered as a suitable alternate animal model to assess the neurological dysfunction of organic UV filters. •4-Methylbenzylidene (4-MBC) camphor alters D. rerio motor behavior.•Decreased touch response due to motor function deficit.•Brain histology reveals loss of neuronal cell population.•Altered expression of neurodevelopmental mRNA transcripts.•Docking studies confirm 4-MBC affinity and modulation with Sonic Hedgehog protein.
ISSN:0013-9351
1096-0953
DOI:10.1016/j.envres.2023.117746