首页> 外文期刊>Biomedicine & preventive nutrition >Naringin modulates the impairment of memory, anxiety, locomotor, and emotionality behaviors in rats exposed to deltamethrin; a possible mechanism association with oxidative stress, acetylcholinesterase and ATPase
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Naringin modulates the impairment of memory, anxiety, locomotor, and emotionality behaviors in rats exposed to deltamethrin; a possible mechanism association with oxidative stress, acetylcholinesterase and ATPase

机译:柚皮苷调节暴露于溴氰菊酯的大鼠的记忆,焦虑,运动能力和情绪行为的损害;可能与氧化应激,乙酰胆碱酯酶和ATPase的机制相关

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Exposure to pyrethroid pesticides has been associated with adverse neurodevelopmental outcomes, like neurodegenerative disorder, low IQ, pervasive developmental disorder, attention problems. Thus, we investigated the relationship between pyrethroid deltamethrin exposure to acetylcholine esterase, ATPase, oxidative stress biomarkers, and impaired behavior performance, and the possible ameliorating mechanism of dietary flavonoid naringin in male Wistar rats. Adult male wistar rats were divided into four different groups. Group I: control group; group II received DLM dissolved in corn oil 12.8mg/kg BW orally (1/10 LD50) for three weeks; group III received DLM as group II and naringin (100mg/kg BW for 21days) orally. Group IV: naringin alone. DLM exposure leads to reduction in the levels of acetylcholinesterase, Na+/K+, Ca2+, Mg2+ ATPase, enzymic and non-enzymic antioxidants activities in cortex and hippocampus region and increase the activities of TBARS. DLM-induced neuronal alterations was evidenced by impairment behavioral performance, like memory, anxiety, locomotor, and emotionality behaviors. This is also supported by histopathological findings of cortex and hippocampus region of rats. However, naringin treatment modulates the abnormalities of DLM-induced alterations in oxidative stress biomarkers, acetylcholine esterase, ATPase, and behavioral performance of rats. These findings highlight the efficacy of naringin as neuroprotectant. In conclusion, our results demonstrated that DLM cause neurobehavioral and biochemical alterations. Oxidative stress, free radical mechanism play major role on DLM-induced neurotoxicity. Naringin could be a suitable agent for preventing the toxicity of DLM by its potent antioxidant, free radical scavenging and neuroprotective activity.
机译:暴露于拟除虫菊酯类农药已与不良的神经发育结果相关,如神经变性疾病,智商低,普遍的发育障碍,注意问题。因此,我们研究了拟除虫菊酯溴氰菊酯暴露于乙酰胆碱酯酶,ATPase,氧化应激生物标志物与行为表现受损之间的关系,以及饮食性黄酮类柚皮苷改善雄性Wistar大鼠的可能机制。将成年雄性wistar大鼠分成四个不同的组。第一组:对照组;第二组口服DLM溶于玉米油12.8mg / kg体重的DLM(1/10 LD50),持续三周;第三组口服DLM作为第二组并服用柚皮苷(100mg / kg体重,持续21天)。第四组:仅柚皮苷。暴露于DLM会导致皮质和海马区的乙酰胆碱酯酶,Na + / K +,Ca2 +,Mg2 + ATPase,酶和非酶抗氧化剂的活性降低,并增加TBARS的活性。 DLM诱导的神经元改变可以通过损害行为表现来证明,例如记忆,焦虑,运动和情绪行为。大鼠的皮质和海马区的组织病理学发现也支持这一点。但是,柚皮苷治疗调节了DLM诱导的氧化应激生物标志物,乙酰胆碱酯酶,ATPase和大鼠行为表现的改变。这些发现突出了柚皮苷作为神经保护剂的功效。总之,我们的结果表明DLM会引起神经行为和生化改变。氧化应激,自由基机制在DLM诱导的神经毒性中起主要作用。柚皮苷可以通过有效的抗氧化剂,自由基清除和神经保护活性来预防DLM的毒性。

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