Bisphenol-A (BPA), a synthetic compound ubiquitously present in the environment, can act as an endocrine disruptor by binding to both canonical and non-canonical estrogen receptors (ERs). Exposure to BPA has been linked to various cancers, in particular, those arising in hormone-targeted tissues such as the breast. In this study, we evaluated the effect of BPA intake through drinking water on ErbB2/neu-driven cancerogenesis in BALB–neuT mice, transgenic for a mutated ErbB2/neu receptor gene, which reproducibly develop carcinomas in all mammary glands. In this model, BPA accelerated mammary cancerogenesis with an increase in the number of tumors per mouse and a concurrent decrease in tumor-free and overall survival. As assessed by immunohistochemistry, BALB– neuT tumors were ER-negative but expressed high levels of the alternative estrogen receptor GPR30, regardless of BPA exposure. On the other hand, BPA exposure resulted in a marked upregulation of progesterone receptors in preinvasive tumors and of Ki67, CD31, and phosphorylated Akt in invasive tumors. Moreover, based on several infiltration markers of immune cells, BPA favored an immunosuppressive tumor microenvironment. Finally, in vitro cell survival studies performed on a cell line established from a BALB–neuT breast carcinoma confirmed that BPA’s impact on cancer progression can be particularly relevant after chronic, low-dose exposure.

Bisphenol-A in Drinking Water Accelerates Mammary Cancerogenesis and Favors an Immunosuppressive Tumor Microenvironment in BALB–neuT Mice / Focaccetti, Chiara; Nardozi, Daniela; Benvenuto, Monica; Lucarini, Valeria; Angiolini, Valentina; Carrano, Raffaele; Scimeca, Manuel; Servadei, Francesca; Mauriello, Alessandro; Mancini, Patrizia; Besharat, Zein Mersini; Milella, Michele; Migliaccio, Silvia; Ferretti, Elisabetta; Cifaldi, Loredana; Masuelli, Laura; Palumbo, Camilla; Bei, Roberto. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 25:11(2024). [10.3390/ijms25116259]

Bisphenol-A in Drinking Water Accelerates Mammary Cancerogenesis and Favors an Immunosuppressive Tumor Microenvironment in BALB–neuT Mice

Nardozi, Daniela;Lucarini, Valeria;Angiolini, Valentina;Mancini, Patrizia;Besharat, Zein Mersini;Migliaccio, Silvia;Ferretti, Elisabetta;Masuelli, Laura;
2024

Abstract

Bisphenol-A (BPA), a synthetic compound ubiquitously present in the environment, can act as an endocrine disruptor by binding to both canonical and non-canonical estrogen receptors (ERs). Exposure to BPA has been linked to various cancers, in particular, those arising in hormone-targeted tissues such as the breast. In this study, we evaluated the effect of BPA intake through drinking water on ErbB2/neu-driven cancerogenesis in BALB–neuT mice, transgenic for a mutated ErbB2/neu receptor gene, which reproducibly develop carcinomas in all mammary glands. In this model, BPA accelerated mammary cancerogenesis with an increase in the number of tumors per mouse and a concurrent decrease in tumor-free and overall survival. As assessed by immunohistochemistry, BALB– neuT tumors were ER-negative but expressed high levels of the alternative estrogen receptor GPR30, regardless of BPA exposure. On the other hand, BPA exposure resulted in a marked upregulation of progesterone receptors in preinvasive tumors and of Ki67, CD31, and phosphorylated Akt in invasive tumors. Moreover, based on several infiltration markers of immune cells, BPA favored an immunosuppressive tumor microenvironment. Finally, in vitro cell survival studies performed on a cell line established from a BALB–neuT breast carcinoma confirmed that BPA’s impact on cancer progression can be particularly relevant after chronic, low-dose exposure.
2024
ErbB2/neu-driven cancerogenesis; breast cancer; endocrine-disrupting compound (EDC); immunohistochemistry; mouse.
01 Pubblicazione su rivista::01a Articolo in rivista
Bisphenol-A in Drinking Water Accelerates Mammary Cancerogenesis and Favors an Immunosuppressive Tumor Microenvironment in BALB–neuT Mice / Focaccetti, Chiara; Nardozi, Daniela; Benvenuto, Monica; Lucarini, Valeria; Angiolini, Valentina; Carrano, Raffaele; Scimeca, Manuel; Servadei, Francesca; Mauriello, Alessandro; Mancini, Patrizia; Besharat, Zein Mersini; Milella, Michele; Migliaccio, Silvia; Ferretti, Elisabetta; Cifaldi, Loredana; Masuelli, Laura; Palumbo, Camilla; Bei, Roberto. - In: INTERNATIONAL JOURNAL OF MOLECULAR SCIENCES. - ISSN 1422-0067. - 25:11(2024). [10.3390/ijms25116259]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1712131
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