Department of Applied Chemistry, China Agricultural University, Yuanmingyuan West Road 2, Beijing, 100193, China.
Department of Applied Chemistry, China Agricultural University, Yuanmingyuan West Road 2, Beijing, 100193, China; Beijing Advanced Innovation Center for Food Nutrition and Human Health, Yuanmingyuan West Road 2, Beijing, 100193, China.
Environ Res. 2020 Jun;185:109393. doi: 10.1016/j.envres.2020.109393. Epub 2020 Mar 16.
Effects of temperature on metabolism/biotransformation and toxicokinetics to lizards are significant, but frequently ignored in toxicology studies. Beta-cyfluthrin (BC) is a pyrethroid insecticide and has been widely used globally. The study aimed to understand the diverse adverse effects of BC to the lizard (Eremias argus) at different temperature regimes. We carried out a single oral BC treatment (20 mg/kg bw) for toxicokinetic study and a 7-day BC (10 mg/kg bw) gavage to look at toxicology by monitoring changes in the biomarkers HSP70, SOD, MDA, CarE, UDPGT, GST, cyp genes, and other metabolic responses. Results showed that BC was lethal to lizards, showing oxidative damages in the liver at ambient temperature (25 °C). Heat stress (35 °C) could exacerbate the oxidative damage (MDA increased) caused by BC, due to the disorder of the antioxidant defense system. The result of tissue distribution and toxicokinetic study also showed that temperature affected the BC biotransformation in lizards. The biotransformation of BC maybe relates to the activation of CarE and UDGPT by heat stress. However, the cyp system and GST didn't increase under BC or/and heat treatments. H-NMR metabolomics analysis showed that BC or/and heat stress interfered with energy and amino acid metabolism of the liver. Unlike acute lethal toxicity, the occurrence of the BC and heat stresses has detrimental effects on lizard individuals and populations on sub-lethal levels. Our results indicate that pollution and global warming (or some other extremely weather) may generate significant and harmful effects on lizards.
温度对蜥蜴的代谢/生物转化和毒代动力学有重要影响,但在毒理学研究中经常被忽视。β-氯氟氰菊酯(BC)是一种拟除虫菊酯类杀虫剂,已在全球范围内广泛使用。本研究旨在了解 BC 在不同温度条件下对蜥蜴(Eremias argus)的多种不良影响。我们进行了单次口服 BC 处理(20mg/kg bw)的毒代动力学研究和 7 天的 BC(10mg/kg bw)灌胃,通过监测 HSP70、SOD、MDA、CarE、UDPGT、GST、cyp 基因等生物标志物和其他代谢反应的变化来观察毒理学。结果表明,BC 对蜥蜴具有致死性,在环境温度(25°C)下表现出肝脏氧化损伤。热应激(35°C)会加剧 BC 引起的氧化损伤(MDA 增加),这是由于抗氧化防御系统紊乱所致。组织分布和毒代动力学研究的结果还表明,温度会影响蜥蜴体内 BC 的生物转化。BC 的生物转化可能与热应激下 CarE 和 UDGPT 的激活有关。然而,在 BC 或/和热处理下,cyp 系统和 GST 并没有增加。H-NMR 代谢组学分析表明,BC 或/和热应激干扰了肝脏的能量和氨基酸代谢。与急性致死毒性不同,BC 和热应激的发生对亚致死水平的蜥蜴个体和种群产生了有害影响。我们的研究结果表明,污染和全球变暖(或其他一些极端天气)可能对蜥蜴产生重大而有害的影响。