Bisphenol A impairs mitochondrial function in spleens of mice via oxidative stress

Molecular & Cellular Toxicology - Tập 9 Số 4 - Trang 401-406 - 2013
Yuzhu Dong1, Lingling Zhai2, Ling Zhang2, Lihong Jia2, Xiaofei Wang1
1Department of Rheumatology, Shengjing Hospital of China Medical University, Shenyang, China
2Department of Child and Adolescent Health, School of Public Health, China Medical University, Shenyang, China

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Chapin, R. E. et al. NTP-CERHR expert panel report on the reproductive and developmental toxicity of bisphenol A. Dev Reprod Toxicol 83:157–395 (2008).

Ben-Jonathan, N., Hugo, E. R. & Brandebourg, T. D. Effects of bisphenol A on adipokine release from human adipose tissue: Implications for the metabolic syndrome. Mol Cell Endocrinol 304:49–54 (2009).

Groff, T. Bisphenol A: Invisible pollution. Curr Opin Pediat 22:524–529 (2010).

Rogers, J. A., Metz, L. & Yong, V. W. Endocrine disrupting chemicals and immune responses: A focus on bisphenol-A and potential mechanisms. Mol Immunol 53:421–430 (2013).

Goto, M., Ono, H., Takano-Ishikawa, Y., Shinmoto, H. & Yoshida, M. Mac1+ cells are required for enhancement of splenocytes proliferation caused by bisphenol A. Biosci Bio-technol Biochem 68:263–265 (2004).

Yan, H., Takamoto, M. & Sugane, K. Exposure to bisphenol A prenatally or in adulthood promotes TH2 cytokine production associated with reduction of CD4+ CD25+ regulatory T-cells. Environ Health Perspect 116:514–519 (2008).

Donohue, K. M. et al. Prenatal postnatal bisphenol A exposure and asthma development among inner-city children. J Allergy Clin Immunol 131:736–742 (2013).

Kuan, Y. H., Huang, F. M., Li, Y. C. & Chang, Y. C. Pro-inflammatory activation of macrophages by bisphenol A-glycidyl-methacrylate involved NF-κB activation via PI3K/Akt pathway. Food Chem Toxicol 50: 4003–4009 (2012).

Hassan, Z. K. et al. Bisphenol A induces hepatotoxicity through oxidative stress in rat model. Oxid Med Cell Longev doi: 10.1155/2012/194829 (2012).

Moon, M. K. et al. Bisphenol A impairs mitochondrial function in the liver at doses below the no-observed-adverse-effect level. J Korean Med Sci 27:644–652 (2012).

Picard, M. & Turnbull, D. M. Linking the metabolic state and mitochondrial DNA in chronic disease, health, and aging. Diabetes 62:672–678 (2013).

Lin, Y. et al. Exposure to bisphenol A induces dysfunction of insulin secretion and apoptosis through the damage of mitochondria in rat insulinoma (INS-1) cells. Cell Death Dis 4:e460 (2013).

Miao, S. et al. Influence of bisphenol A on devel-oping rat estrogen receptors and some cytokines in rats: A two-generational study. J Toxicol Environ Health 71: 1000–1008 (2008).

Rubtsov, A. V., Rubtsova, K., Kappler, J. W. & Marrack, P. Genetic and hormonal factors in female-biased autoimmunity. Autoimmun Rev 9:494–498 (2010).

Yurino, H. et al. Endocrine disruptors (environmental estrogens) enhance autoantibody production by B1 cells. Toxicol Sci 81:139–147 (2004).

Guo, H. et al. Bisphenol A in combination with TNFα selectively induces TH2 cell-promoting dendritic cells in vitro with an estrogen-like activity. Cell Mol Immunol 7:227–234 (2010).

Bonefeld-Jorgensen, E. C., Long, M., Hofmeister, M. V. & Vinggaard, A. M. Endocrine-disrupting potential of bisphenol A, bisphenol A dimethacrylate, 4-n-nonylphenol, and 4-n-octylphenol in vitro: New data and a brief review. Environ Health Perspect 115:69–76 (2007).

Frericks, M., Meissner, M. & Esser, C. Microarray analysis of the AhR system: Tissue-specific flexibility in signal and target genes. Toxicol Appl Pharmacol 220:320–332 (2007).

Midoro-Horiuti, T., Tiwari, R., Watson, C. S. & Goldblum, R. M. Maternal bisphenol A exposure promotes the development of experimental asthma in mouse pups. Environ Health Perspect 118:273–277 (2010).

Selgrade, M. K., Blain, R. B., Fedak, K. M. & Cawley, M. A. Potential risk of asthma associated with in utero exposure to xenobiotics. Birth Defects Res. C Embryo Today 99:1–13 (2013).

Chepelev, N. L. et al. Bisphenol A activates the Nrf1/2-anti-oxidant response element pathway in HEK 293 cells. Chem Res Toxicol 26:498–506 (2013).

Vandenberg, L. N. et al. Urinary, circulating, and tissue biomonitoring studies indicate wide-spread exposure to bisphenol A. Environ Health Perspect 118: 1055–1070 (2010).

Magliano, D. J. & Lyons, J. G. Bisphenol A and diabetes, insulin resistance, cardiovascular disease and obesity: Controversy in a (plastic) cup? J Clin Endocrinol Metab 98:502–504 (2013).

Akingbemi, B. T., Sottas, C. M., Koulova, A. I., Klinefelter, G. R. & Hardy, M. P. Inhibition of testicular steroidogenesis by the xenoestrogen bisphenol A is associated with reduced pituitary luteinizing hormone secretion and decreased steroidogenic enzyme gene expression in rat Leydig cells. Endocrinology 145:592–603 (2004).

Yildiz, N. & Barlas, N. Hepatic and renal functions in growing male rats after bisphenol A and octylphenol exposure. Human Exp Toxicol 32:675–786 (2013).

Tyl, R. W. et al. Two-generation reproductive toxicity study of dietary bisphenol A in CD-1 (Swiss) mice. Toxicol Sci 104:362–384 (2008).

Somm, E. et al. Perinatal exposure to bisphenol A alters early adipogenesis in the rat. Environ Health Perspect 117:1549–1555 (2009).