P. Snega Priya , P. Pratiksha Nandhini , S. Vaishnavi , V. Pavithra , Mikhlid H. Almutairi , Bader O. Almutairi , Selvaraj Arokiyaraj , Raman Pachaiappan , Jesu Arockiaraj
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引用次数: 0
摘要
本研究调查了罗丹明 B 在斑马鱼体内的生殖毒性及其对 F1 代的转基因影响。硅学毒性预测显示,罗丹明 B 的毒性很高,主要针对与生殖和内分泌系统相关的途径。斑马鱼体内实验表明,罗丹明 B 浓度为 1.5 毫克/升时,会导致繁殖力参数显著下降,尤其是雌性斑马鱼。组织病理学分析显示生殖器官发生了明显变化,进一步证实了罗丹明 B 的生殖毒性,雌性比雄性更易受影响。基因表达研究表明,罗丹明 B 处理过的雌鱼排卵关键基因受到明显抑制,这突出表明激素失衡是生殖毒性的一种潜在机制。此外,生物蓄积性研究表明,罗丹明 B 存在于成鱼性腺和 F1 代样本中,这表明染料存在跨代转移。此外,罗丹明 B 还会诱发 F1 代幼鱼的氧化应激,表现为活性氧水平升高和抗氧化酶活性改变。神经毒性评估显示,乙酰胆碱酯酶活性降低,表明 F1 代幼虫可能出现神经系统损伤。这项研究全面证明了罗丹明 B 对成年斑马鱼的生殖毒性及其对 F1 代的跨代影响。
Rhodamine B, an organic environmental pollutant induces reproductive toxicity in parental and teratogenicity in F1 generation in vivo
This study investigated the reproductive toxicity of rhodamine B in zebrafish and its transgenerational effects on the F1 generation. In silico toxicity predictions revealed high toxicity of rhodamine B, mainly targeting pathways associated with the reproductive and endocrine systems. In vivo experiments on zebrafish demonstrated that rhodamine B exposure at a concentration of 1.5 mg/L led to significant impairments in fecundity parameters, particularly affecting females. Histopathological analysis revealed distinct changes in reproductive organs, further confirming the reproductive toxicity of rhodamine B, with females being more susceptible than males. Gene expression studies indicated significant suppression of genes crucial for ovulation in rhodamine B-treated female fish, highlighting hormonal imbalance as a potential mechanism of reproductive toxicity. Furthermore, bioaccumulation studies showed the presence of rhodamine B in both adult fish gonads and F1 generation samples, suggesting transgenerational transfer of the dye. Embryotoxicity studies on F1 generation larvae demonstrated reduced survival rates, lower hatching rates, and increased malformations in groups exposed to rhodamine B. Moreover, rhodamine B induced oxidative stress in F1 generation larvae, as evidenced by elevated levels of reactive oxygen species and altered antioxidant enzyme activity. Neurotoxicity assessments revealed reduced acetylcholinesterase activity, indicating potential neurological impairments in F1 generation larvae. Additionally, locomotory defects and skeletal abnormalities were observed in F1 generation larvae exposed to rhodamine B. This study provides comprehensive evidence of the reproductive toxicity of rhodamine B in adult zebrafish and its transgenerational effects on the F1 generation.
期刊介绍:
Part C: Toxicology and Pharmacology. This journal is concerned with chemical and drug action at different levels of organization, biotransformation of xenobiotics, mechanisms of toxicity, including reactive oxygen species and carcinogenesis, endocrine disruptors, natural products chemistry, and signal transduction with a molecular approach to these fields.