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硫氟肟醚诱导的小鼠脑氧化应激和 Caspase-3 mRNA 表达受岩藻聚糖硫酸酯的调节。

Fucoidan Modulated Oxidative Stress and Caspase-3 mRNA Expression Induced by Sulfoxaflor in the Brain of Mice.

机构信息

Department of Veterinary Pharmacology and Toxicology, Faculty of Ceyhan Veterinary Medicine, Cukurova University, 01330, Adana, Turkey.

Department of Biotechnology, Institute of Natural and Applied Sciences, Cukurova University, 01330, Adana, Turkey.

出版信息

Neurotox Res. 2021 Dec;39(6):1908-1919. doi: 10.1007/s12640-021-00415-0. Epub 2021 Sep 27.

Abstract

The current study aimed to investigate the role of fucoidan in the oxidative and apoptotic effects of sulfoxaflor, a neonicotinoid sulfoximine insecticide, in the brain of Swiss albino mice (Mus musculus). Sulfoxaflor and fucoidan were administered to mice at doses of 15 mg/kg/day (1/50 oral LD) and 50 mg/kg/day, respectively, by oral gavage for 24 h or 7 days. The tGSH, TBARS and protein levels, and GPx, GR, and GST enzyme activities were determined by spectrophotometric methods. Caspase-3 gene expression level was determined by RT-PCR. Data analysis showed that brains of sulfoxaflor-treated mice exhibited higher TBARS levels; GPx, GR, and GST enzyme activities; and caspase-3 expression levels, as well as lower levels of tGSH. Co-administration of fucoidan and sulfoxaflor reduced the TBARS levels, increased tGSH levels, and increased GPx, GR, and GST enzyme activities. Fucoidan also decreased the sulfoxaflor-induced up-regulation of caspase-3 mRNA expression. Results of the present study showed that sulfoxaflor caused oxidative stress by inducing lipid peroxidation and altering GSH-dependent antioxidants in the brain of mice. In addition, sulfoxaflor may trigger apoptotic cell death shown by the up-regulation of caspase-3. Fucoidan treatment modulated all the aforementioned alterations in the brain of mice. It was concluded that fucoidan might have antioxidant effects that support the GSH-dependent antioxidant system and can play a modulator role in oxidative stress and caspase-3 expression in the brain of sulfoxaflor treated-mice.

摘要

本研究旨在探讨褐藻糖胶在新型烟碱类磺酰亚胺杀虫剂噻虫啉(sulfoxaflor)对瑞士白化小鼠(Mus musculus)大脑的氧化和凋亡作用中的作用。噻虫啉和褐藻糖胶分别以 15mg/kg/天(口服 LD 的 1/50)和 50mg/kg/天的剂量经口服灌胃给药 24 小时或 7 天。采用分光光度法测定 tGSH、TBARS 及蛋白水平和 GPx、GR 和 GST 酶活性。通过 RT-PCR 测定 caspase-3 基因表达水平。数据分析显示,噻虫啉处理组小鼠的大脑中 TBARS 水平较高;GPx、GR 和 GST 酶活性及 caspase-3 表达水平较高,tGSH 水平较低。褐藻糖胶与噻虫啉共同给药可降低 TBARS 水平,增加 tGSH 水平,增加 GPx、GR 和 GST 酶活性。褐藻糖胶还降低了噻虫啉诱导的 caspase-3 mRNA 表达的上调。本研究结果表明,噻虫啉通过诱导脂质过氧化和改变大脑中的 GSH 依赖型抗氧化剂引起氧化应激。此外,噻虫啉可能通过上调 caspase-3 引发凋亡细胞死亡。褐藻糖胶处理调节了小鼠大脑中所有上述变化。研究结论表明,褐藻糖胶可能具有抗氧化作用,支持 GSH 依赖型抗氧化系统,并在噻虫啉处理小鼠的大脑中发挥氧化应激和 caspase-3 表达的调节剂作用。

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