Literature DB >> 31479813

A mixture of persistent organic pollutants relevant for human exposure inhibits the transactivation activity of the aryl hydrocarbon receptor in vitro.

T Q Doan1, H F Berntsen2, S Verhaegen3, E Ropstad3, L Connolly4, A Igout5, M Muller6, M L Scippo7.   

Abstract

While humans are exposed to mixtures of persistent organic pollutants (POPs), their risk assessment is usually based on a chemical-by-chemical approach. To assess the health effects associated with mixed exposures, knowledge on mixture toxicity is required. Several POPs are potential ligands of the Aryl hydrocarbon receptor (AhR), which involves in xenobiotic metabolism and controls many biological pathways. This study assesses AhR agonistic and antagonistic activities of 29 POPs individually and in mixtures by using Chemical-Activated LUciferase gene eXpression bioassays with 3 transgenic cell lines (rat hepatoma DR-H4IIE, human hepatoma DR-Hep G2 and human mammary gland carcinoma DR-T47-D). Among the 29 POPs, which were selected based on their abundance in Scandinavian human blood, only 4 exerted AhR agonistic activities, while 16 were AhR antagonists in DR-H4IIE, 5 in DR-Hep G2 and 7 in DR-T47-D when tested individually. The total POP mixture revealed to be AhR antagonistic. It antagonized EC50 TCDD inducing AhR transactivation at a concentration of 125 and 250 and 500 fold blood levels in DR-H4IIE, DR-T47-D and DR-Hep G2, respectively, although each compound was present at these concentrations lower than their LOEC values. Such values could occur in real-life in food contamination incidents or in exposed populations. In DR-H4IIE, the antagonism of the total POP mixture was due to chlorinated compounds and, in particular, to PCB-118 and PCB-138 which caused 90% of the antagonistic activity in the POP mixture. The 16 active AhR antagonists acted additively. Their mixed effect was predicted successfully by concentration addition or generalized concentration addition models, rather than independent action, with only two-fold IC50 underestimation. We also attained good predictions for the full dose-response curve of the antagonistic activity of the total POP mixture.
Copyright © 2019 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  Antagonistic activity; Aryl hydrocarbon receptor; Generalized concentration addition model; Human relevant mixture; Persistent organic pollutants

Year:  2019        PMID: 31479813     DOI: 10.1016/j.envpol.2019.113098

Source DB:  PubMed          Journal:  Environ Pollut        ISSN: 0269-7491            Impact factor:   8.071


  4 in total

1.  Human Adult Microbiota in a Static Colon Model: AhR Transcriptional Activity at the Crossroads of Host-Microbe Interaction.

Authors:  Elizabeth Goya-Jorge; Irma Gonza; Pauline Bondue; Caroline Douny; Bernard Taminiau; Georges Daube; Marie-Louise Scippo; Véronique Delcenserie
Journal:  Foods       Date:  2022-06-30

2.  Exposure to human relevant mixtures of halogenated persistent organic pollutants (POPs) alters neurodevelopmental processes in human neural stem cells undergoing differentiation.

Authors:  Nichlas Davidsen; Anna Jacobsen Lauvås; Oddvar Myhre; Erik Ropstad; Donatella Carpi; Emilio Mendoza-de Gyves; Hanne Friis Berntsen; Hubert Dirven; Ragnhild E Paulsen; Anna Bal-Price; Francesca Pistollato
Journal:  Reprod Toxicol       Date:  2020-12-14       Impact factor: 3.143

3.  High Serum-Induced AhRL Is Associated with Prevalent Metabolic Syndrome and Future Impairment of Glucose Tolerance in the Elderly.

Authors:  Youngmi Kim Pak; Hoon Sung Choi; Wook Ha Park; Suyeol Im; P Monica Lind; Lars Lind; Hong Kyu Lee
Journal:  Endocrinol Metab (Seoul)       Date:  2021-04-19

4.  Dioxin-like Activity in Pregnant Women and Indices of Fetal Growth: The ACCEPT Birth Cohort.

Authors:  Manhai Long; Maria Wielsøe; Eva Cecilie Bonefeld-Jørgensen
Journal:  Toxics       Date:  2022-01-08
  4 in total

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