纺织品偶氮染料苏丹黑 B 在体内斑马鱼幼体模型中诱发的肝毒性。

IF 2.5 3区 农林科学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Fish Physiology and Biochemistry Pub Date : 2024-08-01 Epub Date: 2024-07-06 DOI:10.1007/s10695-024-01371-0
Karthikeyan Ramamurthy, Selvam Madesh, P Snega Priya, Rashid Ayub, Hossam M Aljawdah, Selvaraj Arokiyaraj, Ajay Guru, Jesu Arockiaraj
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引用次数: 0

摘要

环境污染,尤其是纺织工业污水的污染,引起了全球的关注。本研究旨在调查苏丹黑 B(一种常用的纺织品偶氮染料)对胚胎斑马鱼的肝毒性。接触苏丹黑 B 会导致浓度依赖性死亡,0.8 毫摩尔时死亡率达 100%,同时斑马鱼会出现生长迟缓和各种畸形。生化标记分析表明了斑马鱼对 SBB 的适应性反应,包括 SOD、CAT、NO 和 LDH 的增加以及 GSH 水平的降低。肝脏形态分析揭示了显著的变化,影响了新陈代谢和解毒功能。此外,体内暴露于 SBB 的斑马鱼体内葡萄糖水平下降,血脂水平升高。炎症基因表达(TNF-α、IL-10和INOS)显示了复杂的调控相互作用,表明在暴露于SBB期间,机体试图对抗促炎状态。细胞凋亡的增加揭示了 SBB 引起的强大的肝细胞反应,与观察到的肝组织损伤和炎症事件相一致。这项多维研究强调了因暴露于 SBB 而产生的错综复杂的反应网络,从而强调了全面了解和采取有针对性的缓解策略的必要性。研究结果不仅对水生生态系统有影响,还可能与人类健康有相似之处,强调了在这一关键领域开展持续研究的必要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Textile azo dye, Sudan Black B, inducing hepatotoxicity demonstrated in in vivo zebrafish larval model.

Textile azo dye, Sudan Black B, inducing hepatotoxicity demonstrated in in vivo zebrafish larval model.

Environmental pollution, particularly from textile industry effluents, raises concerns globally. The aim of this study is to investigate the hepatotoxicity of Sudan Black B (SBB), a commonly used textile azo dye, on embryonic zebrafish. SBB exposure led to concentration-dependent mortality, reaching 100% at 0.8 mM, accompanied by growth retardation and diverse malformations in zebrafish. Biochemical marker analysis indicated adaptive responses to SBB, including increased SOD, CAT, NO, and LDH, alongside decreased GSH levels. Liver morphology analysis unveiled significant alterations, impacting metabolism and detoxification. Also, glucose level was declined and lipid level elevated in SBB-exposed in vivo zebrafish. Inflammatory gene expressions (TNF-α, IL-10, and INOS) showcased a complex regulatory interplay, suggesting an organismal attempt to counteract pro-inflammatory states during SBB exposure. The increased apoptosis revealed a robust hepatic cellular response due to SBB, aligning with observed liver tissue damage and inflammatory events. This multidimensional study highlights the intricate web of responses due to SBB exposure, which is emphasizing the need for comprehensive understanding and targeted mitigation strategies. The findings bear the implications for both aquatic ecosystems and potentially parallels to human health, underscoring the imperative for sustained research in this critical domain.

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来源期刊
Fish Physiology and Biochemistry
Fish Physiology and Biochemistry 农林科学-生化与分子生物学
CiteScore
5.60
自引率
6.90%
发文量
106
审稿时长
4 months
期刊介绍: Fish Physiology and Biochemistry is an international journal publishing original research papers in all aspects of the physiology and biochemistry of fishes. Coverage includes experimental work in such topics as biochemistry of organisms, organs, tissues and cells; structure of organs, tissues, cells and organelles related to their function; nutritional, osmotic, ionic, respiratory and excretory homeostasis; nerve and muscle physiology; endocrinology; reproductive physiology; energetics; biochemical and physiological effects of toxicants; molecular biology and biotechnology and more.
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