Downgrading the systemic condition of rabbits after long term exposure to cypermethrin and piperonyl butoxide

作者:Vardavas Alexander I; Fragkiadaki Persefoni; Alegakis Athanasios K; Kouretas Dimitrios; Goutzourelas Nikolaos; Tsiaoussis John; Tsitsimpikou Christina; Stivaktakis Polychronis D; Carvalho Felix; Tsatsakis Aristidis M
来源:Life Sciences, 2016, 145: 114-120.
DOI:10.1016/j.lfs.2015.12.026

摘要

Aim: The aim of this study is to clarify the effect of cypermethrin (CY) on the oxidative stress (OS) and inflammation status of animals exposed to it and the synergistic role of piperonyl butoxide (PB0). Main methods: Markers of oxidative stress, such as total antioxidant activity (TAC), protein carbonyls, hemoglobin (Hb), reduced glutathione (GSH), thiobarbituric-acid reactive substances (TBARS), along with the telomerase activity in PBMCs (peripheral blood mononuclear cells) were analyzed. Key findings: Oxidative stress markers showed statistically significant differences between groups in TAC (p < 0.001), GSH (p = 0.018) and CAT activity (p = 0.029), which depended on dose and combined effect of both compounds. Telomerase activity also showed a statistically significant difference between all groups (F = 43.48, df = 6, 14, p < 0.001) with cypermethrin, piperonyl butoxide and the co-exposed groups being significantly different from the control group (p < 0.05). Significance: The observed results for TBARS, GSH, Hb, TAC, Crbnls and CAT from our exposed groups showed altered levels compared to control groups that could be linked to doses and combined effects of each chemical substance (cypermethrin and piperonyl butoxide). Oxidative stress markers suggest that cypermethrin, piperonyl butoxide and the co-exposed groups, induce oxidative stress as well as induction of telomerase activity.

  • 出版日期2016-1-15