Estragole DNA adduct accumulation in human liver HepaRG cells upon repeated in vitro exposure.

Abstract:

:Accumulation of N2-(trans-isoestragol-3'-yl)-2'-deoxyguanosine (E-3'-N2-dG) DNA adducts derived from the alkenylbenzene estragole upon repeated dose exposure was investigated since the repair of this adduct was previously shown to be inefficient. To this end human HepaRG cells were exposed to repeating cycles of 2 h exposure to 50 μM estragole followed by 22 h repair to mimic daily exposure. The E-3'-N2-dG DNA adduct levels were quantified by LC-MS/MS after each cycle. The results show accumulation of E-3'-N2-dG DNA adducts at a rate of 17.53 adducts/108 nts/cycle. This rate at the dose level calculated by physiologically based kinetic (PBK) modeling to result in 50 μM was converted to a rate expected at average human daily intake of estragole. The predicted time estimated to reach adduct levels reported at the BMD10 of the related alkenylbenzene methyleugenol of 10-100 adducts /108 nts upon average human daily intake of estragole amounted to 8-80 (in rat) or 6-57 years (in human). It is concluded that the persistent nature of the E-3'-N2-dG DNA adducts may contribute to accumulation of substantial levels of DNA adducts upon prolonged dietary exposure.

journal_name

Toxicol Lett

journal_title

Toxicology letters

authors

Yang S,Wesseling S,Rietjens IMCM

doi

10.1016/j.toxlet.2020.11.009

subject

Has Abstract

pub_date

2021-02-01 00:00:00

pages

1-6

eissn

0378-4274

issn

1879-3169

pii

S0378-4274(20)30466-5

journal_volume

337

pub_type

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