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Systemic PFOS and PFOA exposure and disturbed lipid homeostasis in humans: what do we know and what not?
- Source :
- Critical Reviews in Toxicology, Critical Reviews in Toxicology 51 (2021) 2, Critical Reviews in Toxicology, 51(2), 141-164
- Publication Year :
- 2021
-
Abstract
- Associations between per- and polyfluoroalkyl substances (PFASs) and increased blood lipids have been repeatedly observed in humans, but a causal relation has been debated. Rodent studies show reverse effects, i.e. decreased blood cholesterol and triglycerides, occurring however at PFAS serum levels at least 100-fold higher than those in humans. This paper aims to present the main issues regarding the modulation of lipid homeostasis by the two most common PFASs, PFOS and PFOA, with emphasis on the underlying mechanisms relevant for humans. Overall, the apparent contrast between human and animal data may be an artifact of dose, with different molecular pathways coming into play upon exposure to PFASs at very low versus high levels. Altogether, the interpretation of existing rodent data on PFOS/PFOA-induced lipid perturbations with respect to the human situation is complex. From a mechanistic perspective, research on human liver cells shows that PFOS/PFOA activate the PPAR alpha pathway, whereas studies on the involvement of other nuclear receptors, like PXR, are less conclusive. Other data indicate that suppression of the nuclear receptor HNF4 alpha signaling pathway, as well as perturbations of bile acid metabolism and transport might be important cellular events that require further investigation. Future studies with human-relevant test systems would help to obtain more insight into the mechanistic pathways pertinent for humans. These studies shall be designed with a careful consideration of appropriate dosing and toxicokinetics, so as to enable biologically plausible quantitative extrapolations. Such research will increase the understanding of possible perturbed lipid homeostasis related to PFOS/ PFOA exposure and the potential implications for human health.
- Subjects :
- HBM4EU
lipid perturbation
Business Unit Microbiology & Agrochains
Blood lipids
Physiology
Team Toxicology
010501 environmental sciences
Biology
Toxicology
01 natural sciences
LDL
Voeding, Metabolisme en Genomica
03 medical and health sciences
chemistry.chemical_compound
Animal data
Voeding
PFOS
Toxicokinetics
Humans
triglycerides
Cholesterol homeostasis
VLAG
Nutrition
030304 developmental biology
0105 earth and related environmental sciences
lipoprotein metabolism
0303 health sciences
Pregnane X receptor
Fluorocarbons
Cholesterol
PFOA
cholesterol
Environmental Exposure
Business Unit Microbiologie & Agroketens
Metabolism and Genomics
serum levels
chemistry
Nuclear receptor
Alkanesulfonic Acids
Metabolisme en Genomica
Nutrition, Metabolism and Genomics
hepatocytes
Environmental Pollutants
Signal transduction
Caprylates
Subjects
Details
- ISSN :
- 15476898 and 10408444
- Volume :
- 51
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Critical reviews in toxicology
- Accession number :
- edsair.doi.dedup.....80e9a82099869f9e02e51d12fea4c1e2