Perfluorooctane sulfonate (PFOS) is an emerging persistent organic pollutant, and its potential impact on cognitive function remains unclear. We adopted the C57BL/6J mouse model to investigate the effect of PFOS on cognitive function, as well as the underlying mechanisms. Subchronic exposure was performed by administering PFOS via drinking water for 6 months (at doses of 0, 0.2, and 2.0 mg/kg/day), starting from 10.5 months old. The object recognition ability was tested at 2, 4, and 6 months of exposure, and spatial learning and memory were assessed at endpoint. The apoptosis of neurons and astrocytes in the cortex and hippocampus was analyzed, as well as the potential apoptotic signaling pathways. Our results showed that exposure to PFOS for 6 months caused a decrease in object recognition ability and a decline in learning and spatial memory. PFOS selectively increased apoptosis in neurons of the cerebral cortex and specifically activated the endoplasmic reticulum stress PERK/CHOP signaling pathway. In conclusion, our results confirmed that subchronic exposure to PFOS can lead to cognitive impairment in mice, which might be closely associated with the specific activation of an endoplasmic reticulum stress-induced pro-apoptosis pathway in the cerebral cortex neurons.
Effects of subchronic exposure of perfluorooctane sulfonate on cognitive function of mice and its mechanism.
Haijing Zhang,Chao Zhang,D. Xu,Qin Wang,Dongqun Xu
Published 2023 in Environmental Pollution
ABSTRACT
PUBLICATION RECORD
- Publication year
2023
- Venue
Environmental Pollution
- Publication date
2023-04-01
- Fields of study
Medicine, Environmental Science
- Identifiers
- External record
- Source metadata
Semantic Scholar, PubMed
CITATION MAP
EXTRACTION MAP
CLAIMS
- PFOS selectively increased neuronal apoptosis in the cerebral cortex.박진우 (dztg5apj7m) extraction뀨 (7c402c1b98) reviewq (76h6bfydm6) reviewAK (4715169a40) reviewB (s683577b42) review
CONCEPTS
- c57bl/6j mouse model
The in vivo mouse strain used to assess behavioral and brain effects after PFOS exposure.
Aliases: C57BL/6J mice, C57BL/6J
박진우 (dztg5apj7m) extraction뀨 (7c402c1b98) reviewq (76h6bfydm6) reviewAK (4715169a40) reviewB (s683577b42) review - cerebral cortex
The brain region analyzed for apoptosis and signaling changes in the exposed mice.
Aliases: cortex
박진우 (dztg5apj7m) extraction뀨 (7c402c1b98) reviewq (76h6bfydm6) reviewAK (4715169a40) reviewB (s683577b42) review - endoplasmic reticulum stress perk/chop signaling pathway
An endoplasmic-reticulum-stress-associated apoptotic signaling cascade involving PERK and CHOP examined in cortical neurons.
Aliases: PERK/CHOP signaling pathway, ER stress PERK/CHOP pathway
박진우 (dztg5apj7m) extraction뀨 (7c402c1b98) reviewq (76h6bfydm6) reviewAK (4715169a40) reviewB (s683577b42) review - neuronal apoptosis
Programmed cell death in neurons examined in the cortex and hippocampus after PFOS exposure.
Aliases: apoptosis of neurons
박진우 (dztg5apj7m) extraction뀨 (7c402c1b98) reviewq (76h6bfydm6) reviewAK (4715169a40) reviewB (s683577b42) review - object recognition ability
A behavioral outcome measuring recognition memory through the ability to distinguish novel from familiar objects.
Aliases: object recognition
박진우 (dztg5apj7m) extraction뀨 (7c402c1b98) reviewq (76h6bfydm6) reviewAK (4715169a40) reviewB (s683577b42) review - perfluorooctane sulfonate (pfos)
A perfluorinated persistent organic pollutant administered to the mice through drinking water in this experiment.
Aliases: PFOS
박진우 (dztg5apj7m) extraction뀨 (7c402c1b98) reviewq (76h6bfydm6) reviewAK (4715169a40) reviewB (s683577b42) review - spatial learning and memory
A behavioral outcome reflecting spatial navigation learning and retention assessed at the study endpoint.
Aliases: spatial memory
박진우 (dztg5apj7m) extraction뀨 (7c402c1b98) reviewq (76h6bfydm6) reviewAK (4715169a40) reviewB (s683577b42) review
REFERENCES
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CITED BY
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