Kahramanmaraş Sütçü İmam University, Department of Primary Education, Division of Science Education, Kahramanmaraş, Turkey.
Environ Toxicol Pharmacol. 2012 May;33(3):414-20. doi: 10.1016/j.etap.2012.01.001. Epub 2012 Jan 14.
The aim of this study was to investigate the toxic effects of pyrethroid pesticide lambda-cyhalothrin in the presence of piperonyl butoxide as a modulator in the liver of juvenile Oreochromis niloticus. LC(50) (96h) value of lambda-cyhalothrin was determined as 2.901μg/L for O. niloticus. The fish were exposed to 0.48μg/L (1/6 of the 96-h LC(50)) lambda-cyhalothrin and 10μg/L piperonyl butoxide for 96-h and 15-d. tGSH, GSH, GSSG, Hsp70 and TBARS contents, GPx, GR, GST and caspase-3 enzymes activities were determined. Lambda-cyhalothrin caused increases in tGSH, GSH, TBARS contents, and GST activity. Piperonyl butoxide treatment with lambda-cyhalothrin caused significant increases in tGSH GSH, Hsp70, TBARS contents, and GPx and GST activities while caspase-3 activity was decreased. The results of the present study revealed that lambda-cyhalothrin caused oxidative stress which upregulated GSH and GSH-related enzymes. Piperonyl butoxide increased the oxidative stress potential and apoptotic effects of lambda-cyhalothrin.
本研究旨在研究在毒蕈碱丁醚(一种调节剂)存在的情况下,拟除虫菊酯杀虫剂氯氰菊酯对幼尼罗非鱼肝脏的毒性作用。氯氰菊酯对尼罗非鱼的 LC(50)(96h)值为 2.901μg/L。鱼被暴露于 0.48μg/L(96h LC(50)的 1/6)氯氰菊酯和 10μg/L 毒蕈碱丁醚中 96h 和 15d。测定 tGSH、GSH、GSSG、Hsp70 和 TBARS 含量、GPx、GR、GST 和 caspase-3 酶活性。氯氰菊酯导致 tGSH、GSH、TBARS 含量和 GST 活性增加。氯氰菊酯与毒蕈碱丁醚联合处理导致 tGSH、GSH、Hsp70、TBARS 含量和 GPx 和 GST 活性显著增加,而 caspase-3 活性降低。本研究结果表明,氯氰菊酯引起氧化应激,上调了 GSH 和 GSH 相关酶。毒蕈碱丁醚增加了氯氰菊酯的氧化应激潜力和细胞凋亡作用。