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  • Exposure to the polyester PET precursor--terephthalic acid induces and perpetuates DNA damage-harboring non-malignant human breast cells.

Exposure to the polyester PET precursor--terephthalic acid induces and perpetuates DNA damage-harboring non-malignant human breast cells.

Carcinogenesis (2014-11-21)
Maria Gloria Luciani-Torres, Dan H Moore, William H Goodson, Shanaz H Dairkee
ABSTRACT

Identification of early perturbations induced in cells from non-cancerous breast tissue is critical for understanding possible breast cancer risk from chemical exposure. We have demonstrated previously that exposure to the ubiquitous xenoestrogens, bisphenol A (BPA) and methyl paraben, promotes the hallmarks of cancer in non-malignant human high-risk donor breast epithelial cells (HRBECs) isolated from several donors. Here we show that terephthalic acid (TPA), a major chemical precursor of polyethylene terephthalate (PET) containers used for the storage of food and beverages, increased the ERα: ERβ ratio in multiple HRBEC samples, suggesting an estrogenic effect. Although, like BPA and methyl paraben, TPA also promoted resistance to tamoxifen-induced apoptosis, unlike these chemicals instead of inducing an increased S-phase fraction, TPA treatment arrested cell proliferation. DNA-PK, ATM and members of the MRN complex, known to be involved in DNA damage sensor and effector proteins, were elevated indicating induction of DNA strand breaks. Early DNA damage checkpoint response, mediated through p53/p21, led to G1 arrest in TPA-exposed cells. Removal of TPA from the growth medium resulted in the rapid induction of BCL2, increasing the ratio of anti-: pro-apoptotic proteins, together with overexpression of Cyclin A/CDK2 proteins. Consequently, despite elevated p53(pSer15) and H2AX(pSer139), indicating sustained DNA damage, TPA exposed cells resumed robust growth rates seen prior to TPA exposure. The propensity for the perpetuation of DNA aberrations that activate DNA damage pathways in non-malignant breast cells justifies careful consideration of human exposure to TPA, particularly at vulnerable life stages.

MATERIALS
Product Number
Brand
Product Description

Supelco
Bisphenol A, certified reference material, TraceCERT®, Manufactured by: Sigma-Aldrich Production GmbH, Switzerland
Sigma-Aldrich
Ethanol, for residue analysis
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Ethyl alcohol, Pure, 190 proof, meets USP testing specifications
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Fluorescein 5(6)-isothiocyanate, BioReagent, suitable for fluorescence, mixture of 2 components, ≥90% (HPLC)
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Ethanol, purum, secunda spirit, denaturated with 2% 2-butanone, S15, ~96% (based on denaturant-free substance)
Supelco
Ethanol, standard for GC
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Bisphenol A, 97%
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Bisphenol A, ≥99%
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Ethyl alcohol, Pure, 190 proof, ACS spectrophotometric grade, 95.0%
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Ethanol standards 10% (v/v), 10 % (v/v) in H2O, analytical standard
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Fluorescein 5(6)-isothiocyanate, ≥90% (HPLC)
Tamoxifen citrate, European Pharmacopoeia (EP) Reference Standard
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Ethanol, BioUltra, for molecular biology, ≥99.8%, (absolute alcohol, without additive, A15 o1)
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Ethyl alcohol, Pure, 200 proof
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Ethyl alcohol, Pure, 200 proof, ACS reagent, ≥99.5%
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Ethyl alcohol, Pure 200 proof, for molecular biology
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Ethyl alcohol, Pure, 200 proof, meets USP testing specifications
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4-Hydroxytamoxifen, ≥70% Z isomer (remainder primarily E-isomer)
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Tamoxifen, ≥99%
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Ethyl alcohol, Pure, 200 proof, anhydrous, ≥99.5%
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4-Hydroxytamoxifen, analytical standard, (E) and (Z) isomers (50:50)
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Ethyl alcohol, Pure, 160 proof, Excise Tax-free, Permit for use required
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Ethanol, ACS reagent, prima fine spirit, without additive, F15 o1
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Ethyl alcohol, Pure, 190 proof, ACS reagent, meets USP testing specifications, Excise Tax-free, Permit for use required
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Ethyl alcohol, Pure, 200 proof, ACS reagent, meets USP testing specifications, Excise Tax-free, Permit for use required
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Ethanol, puriss. p.a., absolute, ≥99.8% (GC)
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Ethanol, tested according to Ph. Eur.
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Tamoxifen, analytical standard
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4-Hydroxytamoxifen, (E) and (Z) isomers (50:50), analytical standard
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Ethanol, purum, absolute ethanol, denaturated with 1% cyclohexane, A15 CYCLO1, ≥99.8% (based on denaturant-free substance)