Neurotoxicity of Chlorpyrifos, Carbofuran, and Cypermethrin in Adolescent Rats’ Brain

IF 0.1 Q4 MEDICINE, GENERAL & INTERNAL
Muhammad Ihwan Narwanto, A. Purwandhono, K. Sofiana, Zahrah Febianti, E. Putri, M. A. Jauhani
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Abstract

Chronic exposure to insecticides, even at low levels, has led to chronic neurotoxicity. Adolescent brain is still undergoing important developments, including in the hippocampus. This study investigated neurotoxicity effects of subacute exposure to chlorpyrifos, carbofuran and cypermethrin in the brain of adolescent rats. This study was performed at the Histology, Biochemistry, and Animal House Laboratory of Jember University from November to December 2021. Subjects were divided into five groups: normal, control, chlorpyrifos, carbofuran, and cypermethrin. Short-term memory was evaluated by Y maze test and tissue damage was evaluated by histological examination. Brain MDA levels were determined by thiobarbituric acid reactive substance method to evaluate the oxidative stress effect on the organ. This study showed spontaneous alternation in the Y maze test and the number of pyramidal neurons in hippocampus decreased in the cypermethrin group. There was a significant elevation of brain MDA level in carbofuran and cypermethrin groups. Thus, cypermethrin causes more severe neurotoxicity than carbofuran and chlorpyrifos. Improvements in the insecticide application management are urgently needed to prevent neurotoxicity.
毒死蜱、呋喃丹和氯氰菊酯对青少年大鼠脑的神经毒性
长期接触杀虫剂,即使是低剂量,也会导致慢性神经毒性。青少年的大脑仍在经历重要的发育,包括海马体。本研究探讨了亚急性暴露毒死蜱、谷草酰胺和氯氰菊酯对青春期大鼠大脑的神经毒性作用。本研究于2021年11月至12月在Jember大学组织学、生物化学和动物实验室进行。受试者分为正常组、对照组、毒死蜱组、呋喃丹组和氯氰菊酯组。用Y迷宫法评价短期记忆,用组织学检查评价组织损伤。采用硫代巴比妥酸反应物质法测定大鼠脑组织MDA水平,评价氧化应激对脑组织的影响。本研究发现,氯氰菊酯组大鼠Y迷宫实验出现自发交替,海马锥体神经元数量减少。氟虫胺组和氯氰菊酯组脑组织MDA水平显著升高。因此,氯氰菊酯造成的神经毒性比呋喃和毒死蜱更严重。为了防止神经毒性,迫切需要改进杀虫剂的施用管理。
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