Integrated transcriptomic and proteomic analysis indicated that neurotoxicity of rats with chronic fluorosis may be in mechanism involved in the changed cholinergic pathway and oxidative stress
Author:
Funder
Guizhou Medical University
Publisher
Elsevier BV
Subject
Inorganic Chemistry,Molecular Medicine,Biochemistry
Reference34 articles.
1. Association of lifetime exposure to fluoride and cognitive functions in Chinese children: a pilot study;Choi;Neurotoxicol. Teratol.,2015
2. Cognitive impairment and risk factors in elderly people living in fluorosis areas in China;Li;Biol. Trace Elem. Res.,2016
3. An experimental study of blood biochemical diagnostic indices for chronic fluorosis;Guan;Fluoride,1989
4. Exposure to fluoride aggravates the impairment in learning and memory and neuropathological lesions in mice carrying the APP/PS1 double-transgenic mutation;Cao;Alzheimer’s Res. Ther.,2019
5. A role of fluoride on free radical generation and oxidative stress in BV-2 microglia cells;Shuhua;Mediators Inflamm.,2012
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