A systems toxicology approach for identification of disruptions in cholesterol homeostasis after aggregated exposure to mixtures of perfluorinated compounds in humans

Author:

Westerhout Joost1ORCID,den Heijer-Jordaan Annemiek1ORCID,Princen Hans M G2ORCID,Stierum Rob1ORCID

Affiliation:

1. TNO Risk Analysis for Products in Development , 3584 CB Utrecht, The Netherlands

2. TNO Metabolic Health Research , 2333 BE Leiden, The Netherlands

Abstract

Abstract Per- and polyfluoroalkyl substances (PFAS) are used in various household and industrial products. In humans, positive associations were reported between PFAS, including perfluorsulfonic acid and perfluorooctanoic acid, and cholesterol, a cardiometabolic risk factor. Animal studies show the opposite. Human-centered approaches are needed to better understand the effects of PFAS mixtures on cholesterol. Here, a systems toxicology approach is described, using a gene-centered cholesterol biokinetic model. PFAS exposure-gene expression relations from published data were introduced into the model. An existing PFAS physiologically based kinetic model was augmented with lung and dermal compartments and integrated with the cholesterol model to enable exposure-effect modeling. The final model was populated with data reflecting lifetime mixture exposure from: tolerable weekly intake values; the environment; high occupational exposures (ski waxing, PFAS industry). Results indicate that low level exposures (tolerable weekly intake, environmental) did not change cholesterol. In contrast, occupational exposures clearly resulted in internal PFAS exposure and disruption of cholesterol homeostasis, largely in line with epidemiological observations. Despite model limitations (eg, dynamic range, directionality), changes in cholesterol homeostasis were predicted for ski waxers, hitherto unknown from epidemiological studies. Here, future studies involving lipid metabolism could improve risk assessment.

Funder

Netherlands Organisation for Applied Scientific Research

European Union’s Horizon 2020

European Union’s Horizon Europe research and innovation program

European Union

Health and Digital Executive Agency

Publisher

Oxford University Press (OUP)

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