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Ortho-Vanillin Ameliorates Spinetoram-Induced Oxidative Stress in the Silkworm Bombyx mori: Biochemical and In Silico Insights. | LitMetric

Ortho-Vanillin Ameliorates Spinetoram-Induced Oxidative Stress in the Silkworm Bombyx mori: Biochemical and In Silico Insights.

Neotrop Entomol

Section of Entomology, Dept of Zoology, Aligarh Muslim Univ, Aligarh, 202002, India.

Published: October 2024

AI Article Synopsis

  • This study examines the effects of the insecticide spinetoram on silkworms (Bombyx mori), revealing that it reduces body weight, length, and negatively impacts cocoon quality.
  • It identifies oxidative stress in various tissues due to decreased antioxidants and increased lipid peroxidation, indicating cell damage from spinetoram exposure.
  • The research shows that O-Vanillin can counter these harmful effects by preserving antioxidant levels and preventing damage, as well as improving overall health and quality in silkworms, while also indicating stable interactions with a key detoxification protein (CYP9A19) in in silico studies.

Article Abstract

This study investigates the toxic effects of the insecticide spinetoram on the model organism Bombyx mori (Linnaeus) and explores the potential ameliorative properties of O-Vanillin. Sub-lethal concentrations of spinetoram were given to silkworm larvae via oral feed, resulting in reduced body weight, larval length, and impaired cocoon characteristics. A study of the enzymatic and non-enzymatic antioxidants revealed oxidative stress in the gut, fat body, and silk gland tissues, characterized by decreased antioxidants and increased lipid peroxidation. However, post-treatment with O-Vanillin effectively mitigated these toxic effects, preserving antioxidant capacities and preventing lipid peroxidation. Additionally, O-Vanillin prevented the loss of body weight and improved cocoon characteristics. At the histological level, spinetoram exposure caused mild histological damage in the gut, fat body, and silk gland. However, O-Vanillin post-treatment had ameliorative effects and mitigated the histological damages. To delve deeper into the mechanism of amelioration of O-Vanillin, in silico studies were used to study the interaction between an important xenobiotic metabolism protein of the Bombyx mori, i.e., Cytochrome p450, specifically CYP9A19, and O-Vanillin. We performed blind molecular docking followed by molecular dynamic simulation, and the results demonstrated stable binding interactions between O-Vanillin and CYP9A19, a cytochrome P450 protein in silkworm, belonging to the subfamily CYP9A, suggesting a potential role for O-vanillin in modulating xenobiotic metabolism.

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Source
http://dx.doi.org/10.1007/s13744-024-01191-0DOI Listing

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