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Reduction of Endogenous Melatonin Accelerates Cognitive Decline in Mice in a Simulated Occupational Formaldehyde Exposure Environment

Bibliographic Data

ID15480917
AuthorsYufei Mei (0000-0003-3973-3132, Capital Medical University), Chunli Duan (Capital Medical University), Xiaoxiao Li (0000-0001-8622-8847, Central China Normal University), Yun Zhao (0000-0002-2323-2926, Central China Normal University), Fenghua Cao (0000-0002-8124-2778, Central China Normal University), Shuai Shang (0000-0003-4465-9758, Central China Normal University), Shumao Ding (0000-0002-9506-8053, Central China Normal University), Xiangpei Yue (Capital Medical University), Ge Gao (0009-0006-2010-5207, Capital Medical University), Hui Yang (0000-0002-9269-0269, Capital Medical University), Luxi Shen (0000-0002-6538-8881, Capital Medical University), Xueyan Feng (0000-0001-5019-8893, Capital Medical University), Jianping Jia (0000-0003-4624-0336, Capital Medical University), Zhiqian Tong (0000-0002-0511-0386, Capital Medical University, corresponding author), Xu Yang (0000-0001-5928-7710, Central China Normal University, corresponding author)
Year2016
Volume13
Issue3
Pages258-258
Publication date2016-02-29
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Environmental Research and Public Health (JOURNAL)
Journal identifiersISSN: 1661-7827 • E-ISSN: 1660-4601
PublisherMultidisciplinary Digital Publishing Institute (PUBLISHER • CH)
DOI10.3390/ijerph13030258
PMID26938543
OpenAlexW2286748731
LanguageEN
References cited54

Individuals afflicted with occupational formaldehyde (FA) exposure often suffer from abnormal behaviors such as aggression, depression, anxiety, sleep disorders, and in particular, cognitive impairments. Coincidentally, clinical patients with melatonin (MT) deficiency also complain of cognitive problems associated with the above mental disorders. Whether and how FA affects endogenous MT metabolism and induces cognitive decline need to be elucidated. To mimic occupational FA exposure environment, 16 healthy adult male mice were exposed to gaseous FA (3 mg/m3) for 7 consecutive days. Results showed that FA exposure impaired spatial memory associated with hippocampal neuronal death. Biochemical analysis revealed that FA exposure elicited an intensive oxidative stress by reducing systemic glutathione levels, in particular, decreasing brain MT concentrations. Inversely, intraperitoneal injection of MT markedly attenuated FA-induced hippocampal neuronal death, restored brain MT levels, and reversed memory decline. At tissue levels, injection of FA into the hippocampus distinctly reduced brain MT concentrations. Furthermore, at cellular and molecular levels, we found that FA directly inactivated MT in vitro and in vivo. These findings suggest that MT supplementation contributes to the rescue of cognitive decline, and may alleviate mental disorders in the occupational FA-exposed human populations

Cognitive decline · Dementia · Disease · Endogeny · Hippocampal formation · Hippocampus · Melatonin · Oxidative stress · Air Quality and Health Impacts · Indoor Air Quality and Microbial Exposure · Medicine · Olfactory and Sensory Function Studies · Psychology · Endocrinology · Internal Medicine

Citation velocityhistorical
Highly citedNo

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