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DOI10.1093/carcin/bgx003
Bisphenol A activates EGFR and ERK promoting proliferation, tumor spheroid formation and resistance to EGFR pathway inhibition in estrogen receptornegative inflammatory breast cancer cells
Sauer, Scott J.1; Tarpley, Michael2,3; Shah, Imran4; Save, Akshay V.5; Lyerly, H. Kim1,6; Patierno, Steven R.7; Williams, Kevin P.2,3; Devi, Gayathri R.1,6
发表日期2017-03-01
ISSN0143-3334
卷号38期号:3页码:252-260
英文摘要

Emerging evidence from epidemiological studies suggests a link between environmental chemical exposure and progression of aggressive breast cancer subtypes. Of all clinically distinct types of breast cancers, the most lethal phenotypic variant is inflammatory breast cancer (IBC). Overexpression of epidermal growth factor receptors (EGFR/ HER2) along with estrogen receptor (ER) negativity is common in IBC tumor cells, which instead of a solid mass present as rapidly proliferating diffuse tumor cell clusters. Our previous studies have demonstrated a role of an adaptive response of increased antioxidants in acquired resistance to EGFR-targeting drugs in IBC. Environmental chemicals are known to induce oxidative stress resulting in perturbations in signal transduction pathways. It is therefore of interest to identify chemicals that can potentiate EGFR mitogenic effects in IBC. Herein, we assessed in ER-negative IBC cells a subset of chemicals from the EPA ToxCast set for their effect on EGFR activation and in multiple cancer phenotypic assays. We demonstrated that endocrine-disrupting chemicals such as bisphenol A (BPA) and 2,2-bis (p-hydroxyphenyl)-1,1,1-trichloroethane can increase EGFR/ERK signaling. BPA also caused a corresponding increase in expression of SOD1 and anti-apoptotic Bcl-2, key markers of antioxidant and anti-apoptotic processes. BPA potentiated clonogenic growth and tumor spheroid formation in vitro, reflecting IBC-specific pathological characteristics. Furthermore, we identified that BPA was able to attenuate the inhibitory effect of an EGFR targeted drug in a longer-term anchorage- independent growth assay. These findings provide a potential mechanistic basis for environmental chemicals such as BPA in potentiating a hyperproliferative and death-resistant phenotype in cancer cells by activating mitogenic pathways to which the tumor cells are addicted for survival.


语种英语
WOS记录号WOS:000398053900003
来源期刊CARCINOGENESIS
来源机构美国环保署
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/60052
作者单位1.Duke Univ Med Sci, Dept Surg, Div Surg Sci, Durham, NC 27710 USA;
2.North Carolina Cent Univ, Dept Pharmaceut Sci, Biomfg Res Inst, Durham, NC 27707 USA;
3.North Carolina Cent Univ, Technol Enterprise, Durham, NC 27707 USA;
4.US EPA, Natl Ctr Computat Toxicol, Res Triangle Pk, NC 27709 USA;
5.Duke Univ, Trinity Coll Arts & Sci, Durham, NC 27710 USA;
6.Duke Canc Inst, Womens Canc Program, Durham, NC 27710 USA;
7.Duke Canc Inst, Canc Control & Populat Sci Program, Durham, NC 27710 USA
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GB/T 7714
Sauer, Scott J.,Tarpley, Michael,Shah, Imran,et al. Bisphenol A activates EGFR and ERK promoting proliferation, tumor spheroid formation and resistance to EGFR pathway inhibition in estrogen receptornegative inflammatory breast cancer cells[J]. 美国环保署,2017,38(3):252-260.
APA Sauer, Scott J..,Tarpley, Michael.,Shah, Imran.,Save, Akshay V..,Lyerly, H. Kim.,...&Devi, Gayathri R..(2017).Bisphenol A activates EGFR and ERK promoting proliferation, tumor spheroid formation and resistance to EGFR pathway inhibition in estrogen receptornegative inflammatory breast cancer cells.CARCINOGENESIS,38(3),252-260.
MLA Sauer, Scott J.,et al."Bisphenol A activates EGFR and ERK promoting proliferation, tumor spheroid formation and resistance to EGFR pathway inhibition in estrogen receptornegative inflammatory breast cancer cells".CARCINOGENESIS 38.3(2017):252-260.
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