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Original Articles

Orally Administered Bisphenol A Disturbed Antigen Specific Immunoresponses in the Naïve Condition

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Pages 2136-2143 | Received 05 Jan 2007, Accepted 23 May 2007, Published online: 22 May 2014

  • 1) Sonnenschein, C., and Soto, A. M., An updated review of environmental estrogen and androgen mimics and antagonists. J. Steroid Biochem. Mol. Biol., 65, 143–150 (1998).
  • 2) Tsutsumi, O., Assessment of human contamination of estrogenic endocrine-disrupting chemicals and their risk for human reproduction. J. Steroid Biochem. Mol. Biol., 93, 325–330 (2005).
  • 3) Moline, J. M., Golden, A. L., Bar-Chama, N., Smith, E., Rauch, M. E., Chapin, R. E., Perreault, S. D., Schrader, S. M., Suk, W. A., and Landrigan, P. J., Exposure to hazardous substances and male reproductive health: a research framework. Environ. Health Perspect., 108, 803–813 (2000).
  • 4) Guillette, L. J., Jr., Crain, D. A., Rooney, A. A., and Pickford, D. B., Organization versus activation: the role of endocrine-disrupting contaminants (EDCs) during embryonic development in wildlife. Environ. Health Perspect., 103 (Suppl 7), 157–164 (1995).
  • 5) Feldman, D., Estrogens from plastic-are we being exposed? Endocrinology, 138, 1777–1779 (1997).
  • 6) Noda, M., Komatsu, H., and Sano, H., HPLC analysis of dental resin composites components. J. Biomed. Mater. Res., 47, 374–378 (1999).
  • 7) Krishnan, A. V., Stathis, P., Permuth, S. F., Tokes, L., and Feldman, D., Bisphenol-A: an estrogenic substance is released from polycarbonate flasks during autoclaving. Endocrinology, 132, 2279–2286 (1993).
  • 8) Olea, N., Pulgar, R., Perez, P., Olea-Serrano, F., Rivas, A., Novillo-Fertrell, A., Pedraza, V., Soto, A. M., and Sonnenschein, C., Estrogenicity of resin-based composites and sealants used in dentistry. Environ. Health Perspect., 104, 298–305 (1996).
  • 9) Kuiper, G. G., Carlsson, B., Grandien, K., Enmark, E., Haggblad, J., Nilsson, S., and Gustafsson, J. A., Comparison of the ligand binding specificity and transcript tissue distribution of estrogen receptors alpha and beta. Endocrinology, 138, 863–870 (1997).
  • 10) Laws, S. C., Carey, S. A., Ferrell, J. M., Bodman, G. J., and Cooper, R. L., Estrogenic activity of octylphenol, nonylphenol, bisphenol A and methoxychlor in rats. Toxicol. Sci., 54, 154–167 (2000).
  • 11) Maffini, M. V., Rubin, B. S., Sonnenschein, C., and Soto, A. M., Endocrine disruptors and reproductive health: the case of bisphenol-A. Mol. Cell. Endocrinol., 254–255, 179–186 (2006).
  • 12) Sugiura-Ogasawara, M., Ozaki, Y., Sonta, S., Makino, T., and Suzumori, K., Exposure to bisphenol A is associated with recurrent miscarriage. Hum. Reprod., 20, 2325–2329 (2005).
  • 13) Youn, J. Y., Park, H. Y., Lee, J. W., Jung, I. O., Choi, K. H., Kim, K., and Cho, K. H., Evaluation of the immune response following exposure of mice to bisphenol A: induction of Th1 cytokine and prolactin by BPA exposure in the mouse spleen cells. Arch. Pharm. Res., 25, 946–953 (2002).
  • 14) Zalko, D., Soto, A. M., Dolo, L., Dorio, C., Rathahao, E., Debrauwer, L., Faure, R., and Cravedi, J. P., Biotransformations of bisphenol A in a mammalian model: answers and new questions raised by low-dose metabolic fate studies in pregnant CD1 mice. Environ. Health Perspect., 111, 309–319 (2003).
  • 15) Sakabe, K., Okuma, M., Karaki, S., Matsuura, S., Yoshida, T., Aikawa, H., Izumi, S., and Kayama, F., Inhibitory effect of natural and environmental estrogens on thymic hormone production in thymus epithelial cell culture. Int. J. Immunopharmacol., 21, 861–868 (1999).
  • 16) Erlandsson, M. C., Ohlsson, C., Gustafsson, J. A., and Carlsten, H., Role of oestrogen receptors alpha and beta in immune organ development and in oestrogen-mediated effects on thymus. Immunology, 103, 17–25 (2001).
  • 17) Jontell, M., Hanks, C. T., Bratel, J., and Bergenholtz, G., Effects of unpolymerized resin components on the function of accessory cells derived from the rat incisor pulp. J. Dent. Res., 74, 1162–1167 (1995).
  • 18) Goto, M., Ono, H., Takano-Ishikawa, Y., Shinmoto, H., and Yoshida, M., Mac1 positive cells are required for enhancement of splenocytes proliferation caused by bisphenol a. Biosci. Biotechnol. Biochem., 68, 263–265 (2004).
  • 19) Volkel, W., Colnot, T., Csanady, G. A., Filser, J. G., and Dekant, W., Metabolism and kinetics of bisphenol a in humans at low doses following oral administration. Chem. Res. Toxicol., 15, 1281–1287 (2002).
  • 20) Volkel, W., Bittner, N., and Dekant, W., Quantitation of bisphenol A and bisphenol A glucuronide in biological samples by high performance liquid chromatography-tandem mass spectrometry. Drug Metab. Dispos., 33, 1748–1757 (2005).
  • 21) Tian, X., Takamoto, M., and Sugane, K., Bisphenol A promotes IL-4 production by Th2 cells. Int. Arch. Allergy Immunol., 132, 240–247 (2003).
  • 22) Yoshino, S., Yamaki, K., Yanagisawa, R., Takano, H., Hayashi, H., and Mori, Y., Effects of bisphenol A on antigen-specific antibody production, proliferative responses of lymphoid cells, and TH1 and TH2 immune responses in mice. Br. J. Pharmacol., 138, 1271–1276 (2003).
  • 23) Shimoi, K., and Nakayama, T., Glucuronidase deconjugation in inflammation. Methods Enzymol., 400, 263–272 (2005).
  • 24) Shimoi, K., Saka, N., Nozawa, R., Sato, M., Amano, I., Nakayama, T., and Kinae, N., Deglucuronidation of a flavonoid, luteolin monoglucuronide, during inflammation. Drug Metab. Dispos., 29, 1521–1524 (2001).
  • 25) Takafuji, S., and Nakagawa, T., Air pollution and allergy. J. Investig. Allergol. Clin. Immunol., 10, 5–10 (2000).
  • 26) Levetin, E., and Van de Water, P., Environmental contributions to allergic disease. Curr. Allergy Asthma Rep., 1, 506–514 (2001).
  • 27) Alizadeh, M., Ota, F., Hosoi, K., Kato, M., Sakai, T., and Satter, M. A., Altered allergic cytokine and antibody response in mice treated with Bisphenol A. J. Med. Invest., 53, 70–80 (2006).
  • 28) Lee, M. H., Chung, S. W., Kang, B. Y., Park, J., Lee, C. H., Hwang, S. Y., and Kim, T. S., Enhanced interleukin-4 production in CD4+ T cells and elevated immunoglobulin E levels in antigen-primed mice by bisphenol A and nonylphenol, endocrine disruptors: involvement of nuclear factor-AT and Ca2+. Immunology, 109, 76–86 (2003).
  • 29) Pottenger, L. H., Domoradzki, J. Y., Markham, D. A., Hansen, S. C., Cagen, S. Z., and Waechter, J. M., Jr., The relative bioavailability and metabolism of bisphenol A in rats is dependent upon the route of administration. Toxicol. Sci., 54, 3–18 (2000).
  • 30) Yoo, S. D., Shin, B. S., Lee, B. M., Lee, K. C., Han, S. Y., Kim, H. S., Kwack, S. J., and Park, K. L., Bioavailability and mammary excretion of bisphenol a in Sprague-Dawley rats. J. Toxicol. Environ. Health A, 64, 417–426 (2001).
  • 31) Teeguarden, J. G., Waechter, J. M., Jr., Clewell, H. J., 3rd, Covington, T. R., and Barton, H. A., Evaluation of oral and intravenous route pharmacokinetics, plasma protein binding, and uterine tissue dose metrics of bisphenol A: a physiologically based pharmacokinetic approach. Toxicol. Sci., 85, 823–838 (2005).
  • 32) Sugita-Konishi, Y., Shimura, S., Nishikawa, T., Sunaga, F., Naito, H., and Suzuki, Y., Effect of Bisphenol A on non-specific immunodefenses against non-pathogenic Escherichia coli. Toxicol. Lett., 136, 217–227 (2003).
  • 33) Takeuchi, T., Tsutsumi, O., Ikezuki, Y., Kamei, Y., Osuga, Y., Fujiwara, T., Takai, Y., Momoeda, M., Yano, T., and Taketani, Y., Elevated serum bisphenol A levels under hyperandrogenic conditions may be caused by decreased UDP-glucuronosyltransferase activity. Endocr. J., 53, 485–491 (2006).
  • 34) Gursoy, R. N., and Benita, S., Self-emulsifying drug delivery systems (SEDDS) for improved oral delivery of lipophilic drugs. Biomed. Pharmacother., 58, 173–182 (2004).
  • 35) Yamashita, U., Kuroda, E., Yoshida, Y., and Sugiura, T., Effect of endocrine disrupters on immune responses in vivo. J. UOEH, 25, 365–374 (2003).
  • 36) Kurebayashi, H., Nagatsuka, S., Nemoto, H., Noguchi, H., and Ohno, Y., Disposition of low doses of 14C-bisphenol A in male, female, pregnant, fetal, and neonatal rats. Arch. Toxicol., 79, 243–252 (2005).
  • 37) Matthews, J. B., Twomey, K., and Zacharewski, T. R., In vitro and in vivo interactions of bisphenol A and its metabolite, bisphenol A glucuronide, with estrogen receptors alpha and beta. Chem. Res. Toxicol., 14, 149–157 (2001).
  • 38) Snyder, R. W., Maness, S. C., Gaido, K. W., Welsch, F., Sumner, S. C., and Fennell, T. R., Metabolism and disposition of bisphenol A in female rats. Toxicol. Appl. Pharmacol., 168, 225–234 (2000).
  • 39) Teng, S., and Piquette-Miller, M., The involvement of the pregnane X receptor in hepatic gene regulation during inflammation in mice. J. Pharmacol. Exp. Ther., 312, 841–848 (2005).

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