In vivo evaluation of arsenic-associated behavioral and biochemical alterations in F0 and F1 mice

高架加迷宫 莫里斯水上航行任务 生理学 体内 焦虑 肌酐 内科学 医学 水迷宫 内分泌学 生物 毒理 海马体 化学 精神科 生物技术 有机化学
作者
Sheta Biswas,Hasan Ul Banna,Momotaj Jahan,Adiba Anjum,Abu Eabrahim Siddique,Apurba Kumar Roy,Farjana Nikkon,Kazi Abdus Salam,Azizul Haque,Seiichiro Himeno,Khaled Hossain,Zahangir Alam Saud
出处
期刊:Chemosphere [Elsevier BV]
卷期号:245: 125619-125619 被引量:15
标识
DOI:10.1016/j.chemosphere.2019.125619
摘要

Groundwater contaminated with arsenic (As) is the biggest threat to public health in Bangladesh. The children of As-exposure parents are also exposing to As through drinking water. The effects of As on the children's health of As-exposure parents are poorly understood. An animal study was taken to evaluate the effects of As on behavioral and biochemical changes in F1 mice. Swiss albino mice were separated into three groups: a) control, b) As-treated F0 and c) As-treated F1. Elevated plus maze and Morris water maze tests were used for evaluating anxiety, spatial memory and learning, respectively. We found that the effect of As on anxiety like behavior, spatial memory and learning impairment in As-treated F1 mice was significantly higher than that of As-treated F0 mice and control group. Additionally, we also evaluated the effects of As on biochemical parameters by measuring ALT, AST, ALP, BChE, SOD activities and the level of creatinine in As-induced mice, where we found that all of the blood parameters were significantly changed in F1 generation. A significant portion of As accumulated in the brain, liver and kidney of F1 mice than F0 mice. Histological analysis revealed a significant change in tissue damage related to hepatic and renal dysfunctions that might be associated with As-induced biochemical alterations. In conclusion, arsenic plays an important role for the development of As-associated neurological disorders, hepatic toxicities, and renal dysfunctions in both F0 and F1 generations. Notably F1 mice were much more vulnerable to As-exposure than F0 mice.

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