Diphenyl diselenide abrogates brain oxidative injury and neurobehavioural deficits associated with pesticide chlorpyrifos exposure in rats

被引:51
作者
Adedara, Isaac A. [1 ]
Owoeye, Olatunde [2 ]
Awogbindin, Ifeoluwa O. [1 ]
Ajayi, Babajide O. [1 ]
Rocha, Joao B. T. [3 ]
Farombi, Ebenezer O. [1 ]
机构
[1] Univ Ibadan, Coll Med, Dept Biochem, Drug Metab & Toxicol Res Labs, Ibadan, Nigeria
[2] Univ Ibadan, Coll Med, Dept Anat, Ibadan, Nigeria
[3] Univ Fed Santa Maria, CCNE, Dept Bioquim & Biol Mol, BR-97105900 Santa Maria, RS, Brazil
关键词
Chlorpyrifos; Diphenyl diselenide; Neurotoxicity; Acetylcholinesterase; Oxidative stress; ORGANOSELENIUM COMPOUNDS; INDUCED NEUROTOXICITY; ANTIOXIDANT ACTIVITY; LIPID-PEROXIDATION; STRESS; INFLAMMATION; GLUTATHIONE; SELENIUM; MODEL; CHILDREN;
D O I
10.1016/j.cbi.2018.09.016
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Exposure to pesticide chlorpyrifos (CPF) is associated with neurodevelopmental toxicity both in humans and animals. Diphenyl diselenide (DPDS) is a simple synthetic organoselenium well reported to possess antioxidant, anti-inflammatory and neuroprotective effects. However, there is paucity of information on the beneficial effects of DPDS on CPF-mediated brain injury and neurobehavioural deficits. The present study investigated the neuroprotective mechanism of DPDS in rats sub-chronically treated with CPF alone at 5 mg/kg body weight or orally co-treated with DPDS at 2.5 and 5 mg/kg body weight for 35 consecutive days. Endpoint analyses using video-tracking software in a novel environment revealed that co-treatment with DPDS significantly (p < 0.05) protected against CPF-mediated locomotor and motor deficits precisely the decrease in maximum speed, total distance travelled, body rotation, absolute turn angle, forelimb grip strength as well as the increase in negative geotaxis and incidence of fecal pellets. The enhancement in the neurobehavioral activities of rats co-treated with DPDS was verified by track plot analyses. Besides, DPDS assuaged CPF-induced decrease in acetylcholinesterase and antioxidant enzymes activities and the increase in myeloperoxidase activity and lipid peroxidation level in the mid-brain, cerebral cortex and cerebellum of the rats. Histologically, DPDS co-treatment abrogated CPF-mediated neuronal degeneration in the cerebral cortex, dentate gyrus and cornu ammonis3 in the treated rats. In conclusion, the neuroprotective mechanisms of DPDS is related to the prevention of oxidative stress, enhancement of redox status and acetylcholinesterase activity in brain regions of the rats. DPDS may be a promising chemotherapeutic agent against brain injury resulting from CPF exposure.
引用
收藏
页码:105 / 116
页数:12
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