Fluoride and arsenic exposure affects spatial memory and activates the ERK/CREB signaling pathway in offspring rats

奶油 后代 MAPK/ERK通路 内分泌学 信号转导 内科学 氟化物 化学 无机砷 细胞生物学 生物 医学 生物化学 怀孕 无机化学 转录因子 基因 有机化学 遗传学
作者
Yu-peng Zhu,Shuhua Xi,Mingyan Li,Tingting Ding,Nan Liu,Fuyuan Cao,Yang Zeng,Xiaojing Liu,Junwang Tong,Shoufang Jiang
出处
期刊:Neurotoxicology [Elsevier BV]
卷期号:59: 56-64 被引量:55
标识
DOI:10.1016/j.neuro.2017.01.006
摘要

Fluoride and arsenic are inorganic contaminants that occur in the natural environment. Chronic fluoride and/or arsenic exposure can induce developmental neurotoxicity and negatively influence intelligence in children, although the underlying molecular mechanisms are poorly understood. This study explored the effects of fluoride and arsenic exposure in drinking water on spatial learning, memory and key protein expression in the ERK/CREB signaling pathway in hippocampal and cerebral cortex tissue in rat offspring. Pregnant rats were divided into four groups. Control rats drank tap water, while rats in the three exposure groups drank water with sodium fluoride (100 mg/L), sodium arsenite (75 mg/L), and a sodium fluoride (100 mg/L) and sodium arsenite (75 mg/L) combination during gestation and lactation. After weaning, rat pups drank the same solution as their mothers. Spatial learning and memory ability of pups at postnatal day 21 (PND21) and postnatal day 42 (PND42) were measured using a Morris water maze. ERK, phospho-ERK (p-ERK), CREB and phospho-CREB (p-CREB) protein expression in the hippocampus and cerebral cortex was detected using Western blot. Compared with the control pups, escape latencies increased in PND42 pups exposed to arsenic and co-exposed to fluoride and arsenic, and the short-term and long-term spatial memory ability declined in pups exposed to fluoride and arsenic, both alone and in combination. Compared with controls, ERK and p-ERK levels decreased in the hippocampus and cerebral cortex in pups exposed to combined fluoride and arsenic. CREB protein expression in the cerebral cortex decreased in pups exposed to fluoride, arsenic, and the fluoride and arsenic combination. p-CREB protein expression in both the hippocampus and cerebral cortex was decreased in pups exposed to fluoride and arsenic in combination compared to the control group. There were negative correlation between the proteins expression and escape latency periods in pups. These data indicate that exposure to fluoride and arsenic in early life stage changes ERK, p-ERK, CREB and p-CREB protein expression in the hippocampus and cerebral cortex of rat offspring at PND21 and PND 42, which may contribute to impaired neurodevelopment following exposure.
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