dc.creatorde Jesus M.M.
dc.creatorNegrin A.C.
dc.creatorTaboga S.R.
dc.creatorPinto-Fochi M.E.
dc.creatorGoes R.M.
dc.date2015
dc.date2015-06-25T12:51:45Z
dc.date2015-11-26T14:29:16Z
dc.date2015-06-25T12:51:45Z
dc.date2015-11-26T14:29:16Z
dc.date.accessioned2018-03-28T21:32:29Z
dc.date.available2018-03-28T21:32:29Z
dc.identifier
dc.identifierReproductive Toxicology. Elsevier Inc., v. 52, n. , p. 26 - 39, 2015.
dc.identifier8906238
dc.identifier10.1016/j.reprotox.2015.02.005
dc.identifierhttp://www.scopus.com/inward/record.url?eid=2-s2.0-84924050653&partnerID=40&md5=289c1b96c92b9bfef9152ee0d5a23d48
dc.identifierhttp://www.repositorio.unicamp.br/handle/REPOSIP/85289
dc.identifierhttp://repositorio.unicamp.br/jspui/handle/REPOSIP/85289
dc.identifier2-s2.0-84924050653
dc.identifier.urihttp://repositorioslatinoamericanos.uchile.cl/handle/2250/1246795
dc.descriptionBoth high-fat diet and exposure to endocrine-disrupting chemicals have been implicated in susceptibility to pathological prostate lesions, but the consequences of combining the two have not yet been examined. We evaluated the effects of gestational and postnatal exposure to a high-fat diet (20% fat) and low doses of di-n-butyl phthalate (DBP; 5. mg/kg/day), individually or in combination, on the tissue response and incidence of pathological lesions in the ventral prostate of adult gerbils. Continuous intake of a high-fat diet caused dyslipidemia, hypertrophy, and promoted the development of inflammatory, premalignant and malignant prostate lesions, even in the absence of obesity. Life-time DBP exposure was obesogenic and dyslipidemic and increased the incidence of premalignant prostate lesions. Combined exposure to DBP and a high-fat diet also caused prostate hypertrophy, but the effects were less severe than those of individual treatments; combined exposure neither induced an inflammatory response nor altered serum lipid content.
dc.description52
dc.description
dc.description26
dc.description39
dc.descriptionWittassek, M., Koch, H.M., Angerer, J., Brüning, T., Assessing exposure to phthalates - the human biomonitoring approach (2011) Mol Nutr Food Res, 55 (1), pp. 7-31
dc.descriptionKoniecki, D., Wang, R., Moody, R.P., Zhu, J., Phthalates in cosmetic and personal care products: concentrations and possible dermal exposure (2011) Environ Res, 111, pp. 329-336
dc.descriptionBradley, E.L., Burden, R.A., Leon, I., Mortimer, D.N., Speck, D.R., Castle, L., Determination of phthalate diesters in foods (2013) Food Addit Contam Part A, 30, pp. 722-734
dc.descriptionSilva, M.J., Reidy, J.A., Herbert, A.R., Preau, J.L., Needham, L.L., Calafat, A.M., Detection of phthalate metabolites in human amniotic fluid (2004) Bull Environ Contam Toxicol, 72, pp. 1226-1231
dc.descriptionMortensen, G.K., Main, K.M., Andersson, A.M., Leffers, H., Skakkebaek, N.E., Determination of phthalate monoesters in human milk, consumer milk, and infant formula by tandem mass spectrometry (LC-MS-MS) (2005) Anal Bioanal Chem, 382, pp. 1084-1092
dc.descriptionCalafat, A.M., Brock, J.W., Silva, M.J., Gray, L.E., Reidy, J.A., Barr, D.B., Urinary and amniotic fluid levels of phthalate monoesters in rats after the oral administration of di(2-ethylhexyl) phthalate and di-n-butyl phthalate (2006) Toxicology, 217, pp. 22-30
dc.descriptionMain, K.M., Mortensen, G.K., Kaleva, M.M., Boisen, K.A., Damgaard, I.N., Chellakooty, M., Human breast milk contamination with phthalates and alterations of endogenous reproductive hormones in infants three months of age (2006) Environ Health Perspect, 114, pp. 270-276
dc.descriptionFrederiksen, H., Aksglaede, L., Sorensen, K., Skakkebaek, N.E., Juul, A., Andersson, A.M., Urinary excretion of phthalate metabolites in 129 healthy Danish children and adolescents: estimation of daily phthalate intake (2011) Environ Res, 111, pp. 656-663
dc.descriptionKohn, M.C., Parham, F., Masten, S.A., Portier, C.J., Shelby, M.D., Brock, J.W., Human exposure estimates for phthalates (2000) Environ Health Perspect, 108 (10), pp. A440-A442
dc.descriptionMylchreest, E., Cattley, R.C., Foster, P.M.D., Male reproductive tract malformations in rats following gestational and lactational exposure to di(n-butyl) phthalate: an antiandrogenic mechanism? (1998) Toxicol Sci, 43, pp. 47-60
dc.descriptionMylchreest, E., Wallace, D.G., Cattley, R.C., Foster, P.M.D., Dose-dependent alterations in androgen-regulated male reproductive development in rats exposed to di(n-butyl) phthalate during late gestation (2000) Toxicol Sci, 55, pp. 143-151
dc.descriptionStubbs, C.O., Lee, A.L., The obesity epidemic: both energy intake and physical activity contribute (2004) Med J Aust, 181, pp. 489-491
dc.descriptionGrün, F., Blumberg, B., Environmental obesogens: organotins and endocrine disruption via nuclear receptor signaling (2006) Endocrinology, 147, pp. S50-S55
dc.descriptionSchug, T.T., Janesick, A., Blumberg, B., Heindel, J.J., Endocrine disrupting chemicals and disease susceptibility (2011) J Steroid Biochem Mol Biol, 127, pp. 204-215
dc.descriptionHao, C., Cheng, X., Xia, H., Ma, X., The endocrine disruptor mono-(2-ethylhexyl) phthalate promotes adipocyte differentiation and induces obesity in mice (2012) Biosci Rep, 32, pp. 619-629
dc.descriptionHeindel, J.J., vom Saal, F.S., Role of nutrition and environmental endocrine disrupting chemicals during the perinatal period on the aetiology of obesity (2009) Mol Cell Endocrinol, 304 (1-2), pp. 90-96
dc.descriptionHatch, E.E., Nelson, J.W., Stahlhut, R.W., Webster, T.F., Association of endocrine disruptors and obesity: perspectives from epidemiologic studies (2010) Int J Androl, 33 (2), pp. 324-332
dc.descriptionHatch, E.E., Nelson, J.W., Qureshi, M.M., Weinberg, J., Moore, L.L., Singer, M., Association of urinary phthalate metabolite concentrations with body mass index and waist circumference: a cross-sectional study of NHANES data, 1999-2002 (2008) Environ Health, 7, p. 27
dc.descriptionChen, J.Q., Brown, T.R., Russo, J., Regulation of energy metabolism pathways by estrogens and estrogenic chemicals and potential implications in obesity associated with increased exposure to endocrine disruptors (2009) Biochim Biophys Acta, 1793, pp. 1128-1143
dc.descriptionCasals-Casas, C., Feige, J.N., Desvergne, B., Interference of pollutants with PPARs: endocrine disruption meets metabolism (2008) Int J Obes (Lond), 32, pp. S53-S61
dc.descriptionGuzick, D.S., Overstreet, J.W., Factor-Litvak, P., Brazil, C.K., Nakajima, S.T., Coutifaris, C., Sperm morphology, motility, and concentration in fertile and infertile men (2001) N Engl J Med, 345 (19), pp. 1388-1393
dc.descriptionKort, H.I., Massey, J.B., Elsner, C.W., Mitchell-Leef, D., Shapiro, D.B., Witt, M.A., Impact of body mass index values on sperm quantity and quality (2006) J Androl, 27, pp. 450-452
dc.descriptionChung, W.S., Sohn, J.H., Park, Y.Y., Is obesity an underlying factor in erectile dysfunction? (1999) Eur Urol, 36, pp. 68-70
dc.descriptionEsposito, K., Giugliano, F., Di Palo, C., Giugliano, G., Marfella, R., D'Andrea, F., Effect of lifestyle changes on erectile dysfunction in obese men: a randomized controlled trial (2004) JAMA, 291, pp. 2978-2984
dc.descriptionMacDonald, A.A., Herbison, G.P., Showell, M., Farquhar, C.M., The impact of body mass index on semen parameters and reproductive hormones in human males: a systematic review with meta-analysis (2010) Hum Reprod Update, 16 (3), pp. 293-311
dc.descriptionFernandez, C.D.B., Bellentani, F.F., Fernandes, G.S.A., Perobelli, J.E., Favareto, A.P., Nascimento, A.F., Diet-induced obesity in rats leads to a decrease in sperm motility (2011) Reprod Biol Endocrinol, 9, pp. 32-42
dc.descriptionCai, L.Q., Imperato-McGinley, J., Zhu, Y.S., Regulation of prostate 5alpha-reductase-2 gene expression and prostate weight by dietary fat and caloric intake in the rat (2006) Prostate, 66, pp. 738-748
dc.descriptionEscobar, E.L.O., Gomes-Marcondes, M.C.C., Carvalho, H.F., Dietary fatty acid quality affects AR and PPARγ levels and prostate growth (2009) Prostate, 69, pp. 548-558
dc.descriptionRibeiro, D.L., Pinto, M.E., Rafacho, A., Bosqueiro, J.R., Maeda, S.Y., Anselmo-Franci, J.A., High-fat diet obesity associated with insulin resistance increases cell proliferation, estrogen receptor, and PI3K proteins in rat ventral prostate (2012) J Androl, 33, pp. 854-865
dc.descriptionRibeiro, D.L., Pinto, M.E., Maeda, S.Y., Taboga, S.R., Góes, R.M., High fat-induced obesity associated with insulin-resistance increases FGF-2 content and causes stromal hyperplasia in rat ventral prostate (2012) Cell Tissue Res, 349, pp. 577-588
dc.descriptionPelser, C., Mondul, A.M., Hollenbeck, A.R., Park, Y., Dietary fat, fatty acids, and risk of prostate cancer in the NIH-AARP diet and health study (2013) Cancer Epidemiol Biomarkers Prev, 33, pp. 697-707
dc.descriptionRajfer, J., Coffey, D.S., Sex steroid imprinting of the immature prostate. Long-term effects (1978) Invest Urol, 16 (3), pp. 186-190
dc.descriptionIsaacs, J.T., Coffey, D.S., Changes in dihydrotestosterone metabolism associated with the development of canine benign prostatic hyperplasia (1981) Endocrinology, 108 (2), pp. 445-453
dc.descriptionSantti, R., Newbold, R.R., Mäkelä, S., Pylkkänen, L., McLachlan, J.A., Developmental estrogenization and prostatic neoplasia (1994) Prostate, 24 (2), pp. 67-78
dc.descriptionPrins, G.S., Birch, L., Couse, J.F., Choi, I., Katzenellenbogen, B., Korach, K.S., Estrogen imprinting of the developing prostate gland is mediated through stromal estrogen receptor alpha: studies with alphaERKO and betaERKO mice (2001) Cancer Res, 61 (16), pp. 6089-6097
dc.descriptionPrins, G.S., Putz, O., Molecular signaling pathways that regulate prostate gland development (2008) Differentiation, 76 (6), pp. 641-659
dc.descriptionThomson, A.A., Role of androgens and fibroblast growth factors in prostatic development (2001) Reproduction, 121 (2), pp. 187-195
dc.descriptionRicke, W.A., Ishii, K., Ricke, E.A., Simko, J., Wang, Y., Hayward, S.W., Steroid hormones stimulate human prostate cancer progression and metastasis (2006) Int J Cancer, 118 (9), pp. 2123-2131
dc.descriptionCarson, C., Rittmaster, R., The role of dihydrotestosterone in benign prostatic hyperplasia (2003) Urology, 61 (4), pp. 2-7
dc.descriptionZhu, Y.S., Cai, L.Q., Huang, Y., Fish, J., Wang, L., Zhang, Z.K., Receptor isoform and ligand-specific modulation of dihydrotestosterone-induced prostate specific antigen gene expression and prostate tumor cell growth by estrogens (2005) J Androl, 26 (4), pp. 500-510
dc.descriptionZhu, Y.S., Imperato-McGinley, J.L., 5alpha-reductase isozymes and androgen actions in the prostate (2009) Ann N Y Acad Sci, 1155, pp. 43-56
dc.descriptionEllem, S.J., Schmitt, J.F., Pedersen, J.S., Frydenberg, M., Risbridger, G.P., Local aromatase expression in human prostate is altered in malignancy (2004) J Clin Endocrinol Metab, 89 (5), pp. 2434-2441
dc.descriptionEllem, S.J., Wang, H., Poutanen, M., Risbridger, G.P., Increased endogenous estrogen synthesis leads to the sequential induction of prostatic inflammation (prostatitis) and prostatic pre-malignancy (2009) Am J Pathol, 175 (3), pp. 1187-1199
dc.descriptionZhu, X., Leav, I., Leung, Y.K., Wu, M., Liu, Q., Gao, Y., Dynamic regulation of estrogen receptor-beta expression by DNA methylation during prostate cancer development and metastasis (2004) Am J Pathol, 164 (6), pp. 2003-2012
dc.descriptionEllem, S.J., Risbridger, G.P., Aromatase and regulating the estrogen:androgen ratio in the prostate gland (2010) J Steroid Biochem Mol Biol, 118 (4-5), pp. 246-251
dc.descriptionBélanger, A., Candas, B., Dupont, A., Cusan, L., Diamond, P., Gomez, J.L., Changes in serum concentrations of conjugated and unconjugated steroids in 40- to 80-year-old men (1994) J Clin Endocrinol Metab, 79 (4), pp. 1086-1090
dc.descriptionPrins, G.S., Tang, W.Y., Belmonte, J., Ho, S.M., Perinatal exposure to oestradiol and bisphenol A alters the prostate epigenome and increases susceptibility to carcinogenesis (2008) Basic Clin Pharmacol Toxicol, 102 (2), pp. 134-138
dc.descriptionCouse, J.F., Korach, K.S., Estrogen receptor-alpha mediates the detrimental effects of neonatal diethylstilbestrol (DES) exposure in the murine reproductive tract (2004) Toxicology, 205 (1-2), pp. 55-63
dc.descriptionHuang, L., Pu, Y., Alam, S., Birch, L., Prins, G.S., Estrogenic regulation of signaling pathways and homeobox genes during rat prostate development (2004) J Androl, 25 (3), pp. 330-337
dc.descriptionHo, S.M., Tang, W.Y., Belmonte de Frausto, J., Prins, G.S., Developmental exposure to estradiol and bisphenol A increases susceptibility to prostate carcinogenesis and epigenetically regulates phosphodiesterase type 4 variant 4 (2006) Cancer Res, 66 (11), pp. 5624-5632
dc.descriptionEma, M., Antiandrogenic effects of dibutyl phthalate and its metabolite, monobutyl phthalate, in rats (2002) Congenit Anom (Kyoto), 42 (4), pp. 297-308
dc.descriptionGray, L.E., Wilson, V.S., Stoker, T., Lambright, C., Furr, J., Noriega, N., Adverse effects of environmental antiandrogens and androgens on reproductive development in mammals (2006) Int J Androl, 29 (1), pp. 96-104
dc.descriptionBao, A.M., Man, X.M., Guo, X.J., Dong, H.B., Wang, F.Q., Sun, H., Effects of di-n-butyl phthalate on male rat reproduction following pubertal exposure (2011) Asian J Androl, 13 (5), pp. 702-709
dc.descriptionScarano, W.R., Toledo, F.C., Guerra, M.T., Campos, S.G.P., Justulin, L.A., Felisbino, S.L., Long-term effects of developmental exposure to di-n-butyl-phthalate (DBP) on rat prostate: proliferative and inflammatory disorders and a possible role of androgens (2009) Toxicology, 262, pp. 215-223
dc.descriptionVandenberg, L.N., Colborn, T., Hayes, T.B., Heindel, J.J., Jacobs, D.R., Lee, D.H., Hormones and endocrine-disrupting chemicals: low-dose effects and nonmonotonic dose responses (2012) Endocr Rev, 33 (3), pp. 378-455
dc.descriptionRochel, S.S., Bruni-Cardoso, A., Taboga, S.R., Vilamaior, P.S.L., Góes, R.M., Lobe identity in the Mongolian gerbil prostatic complex: a new rodent model for prostate study (2007) Anat Rec (Hoboken), 290, pp. 1233-1247
dc.descriptionPegorin de Campos, S.G.P., Zanetoni, C., Góes, R.M., Taboga, S.R., Biological behavior of the gerbil ventral prostate in three phases of postnatal development (2006) Anat Rec A, 288 A, pp. 723-733
dc.descriptionCampos, S.G., Zanetoni, C., Scarano, W.R., Vilamaior, P.S., Taboga, S.R., Age-related histopathological lesions in the Mongolian gerbil ventral prostate as a good model for studies of spontaneous hormone-related disorders (2008) Int J Exp Pathol, 89, pp. 13-24
dc.descriptionGonçalves, B.F., Zanetoni, C., Scarano, W.R., Góes, R.M., Vilamaior, P.S., Taboga, S.R., Prostate carcinogenesis induced by N-methyl-N-nitrosourea (MNU) in gerbils: histopathological diagnosis and potential invasiveness mediated by extracellular matrix components (2010) Exp Mol Pathol, 88 (1), pp. 96-106
dc.descriptionGonçalves, B.F., Campos, S.G.P., Zanetoni, C., Scarano, W.R., Falleiros, L.R., Amorim, R.L., A new proposed rodent model of chemically induced prostate carcinogenesis: distinct time-course prostate cancer progression in the dorsolateral and ventral lobes (2013) Prostate, 73, pp. 1202-1213
dc.descriptionNascimento, A.F., Sugizaki, M.M., Leopoldo, A.S., Lima-Leopoldo, A.P., Luvizotto, R.A.M., Nogueira, C.R., A hypercaloric pellet-diet cycle induces obesity and co-morbidities in Wistar rats (2008) Arq Bras Endocrinol Metab, 52, pp. 968-974
dc.descriptionTaylor, B.A., Phillips, S.J., Detection of obesity QTLs on mouse chromosomes 1 and 7 by selective DNA pooling (1996) Genomics, 34 (3), pp. 389-398
dc.descriptionWeibel, E.R., Principles and methods for the morphometric study of the lung and other organs (1963) Lab Invest, 12, pp. 131-155
dc.descriptionHuttunen, E., Romppanen, T., Helminen, H.J., A histoquantitative study on the effects of castration on the rat ventral prostate lobe (1981) J Anat, 3, pp. 357-370
dc.descriptionShappell, S.B., Thomas, G.V., Roberts, R.L., Herbert, R., Ittmann, M.M., Rubin, M.A., Prostate pathology of genetically engineered mice: definitions and classification. The consensus report from the Bar Harbor meeting of the Mouse Models of Human Cancer Consortium Prostate Pathology Committee (2004) Cancer Res, 64, pp. 2270-2305
dc.descriptionBorowsky, A.D., Dingley, K.H., Ubick, E., Turteltaub, K.W., Cardiff, R.D., Devere-White, R., Inflammation and atrophy precede prostatic neoplasia in a PhIP-induced rat model (2006) Neoplasia, 8, pp. 708-715
dc.descriptionMaranghi, F., Lorenzetti, S., Tassinari, R., Moracci, G., Tassinari, V., Marcoccia, D., In utero exposure to di-(2-ethylhexyl) phthalate affects liver morphology and metabolism in post-natal CD-1 mice (2010) Reprod Toxicol, 29 (4), pp. 427-432
dc.descriptionMuczynski, V., Lecureuil, C., Messiaen, S., Guerquin, M.-J., N'Tumba-Byn, T., Moison, D., Cellular and molecular effect of MEHP involving LXRα in human fetal testis and ovary (2012) PLoS ONE, 7 (10), p. e48266
dc.descriptionDesvergne, B., Feige, J.N., Casals-Casas, C., PPAR-mediated activity of phthalates: a link to the obesity epidemic? (2009) Mol Cell Endocrinol, 304 (1-2), pp. 43-48
dc.descriptionHowdeshell, K.L., Rider, C.V., Wilson, V.S., Gray, L.E., Mechanisms of action of phthalate esters, individually and in combination, to induce abnormal reproductive development in male laboratory rats (2008) Environ Res, 108 (2), pp. 168-176
dc.descriptionJobling, S., Reynolds, T., White, R., Parker, M.G., Sumpter, J.P., A variety of environmentally persistent chemicals, including some phthalate plasticizers, are weakly estrogenic (1995) Environ Health Perspect, 103, pp. 582-587
dc.descriptionAndersen, H.R., Andersson, A.M., Arnold, S.F., Autrup, H., Barfoed, M., Beresford, N.A., Comparison of shortterm estrogenicity tests for identification of hormone-disrupting chemicals (1999) Environ Health Perspect, 107, pp. 89-108
dc.descriptionTakeuchi, S., Iida, M., Kobayashi, S., Jin, K., Matsuda, T., Kojima, H., Differential effects of phthalate esters on transcriptional activities via human estrogen receptors α and β, and androgen receptor (2005) Toxicology, 210 (2-3), pp. 223-233
dc.descriptionPrins, G.S., Neonatal estrogen exposure induces lobe-specific alterations in adult rat prostate androgen receptor expression (1992) Endocrinology, 130 (6), pp. 3703-3714
dc.descriptionPrins, G.S., Ho, S.M., Early-life estrogens and prostate cancer in an animal model (2010) J Dev Orig Health Dis, 1 (6), pp. 365-370
dc.descriptionLehraiki, A., Racine, C., Krust, A., Habert, R., Levacher, C., Phthalates impair germ cell number in the mouse fetal testis by an androgen- and estrogen-independent mechanism (2009) Toxicol Sci, 111 (2), pp. 372-382
dc.descriptionSegawa, Y., Yoshimura, R., Hase, T., Nakatani, T., Wada, S., Kawahito, Y., Expression of peroxisome proliferator-activated receptor (PPAR) in human prostate cancer (2002) Prostate, 51 (2), pp. 108-116
dc.descriptionKim, J.M., Song, P.H., Kim, H.T., Moon, K.H., Effect of obesity on prostate-specific antigen, prostate volume, and International Prostate Symptom Score in patients with benign prostatic hyperplasia (2011) Korean J Urol, 52, pp. 401-405
dc.descriptionCalle, E.E., Kaaks, R., Overweight, obesity and cancer: epidemiological evidence and proposed mechanisms (2004) Nat Rev Cancer, 4, pp. 579-591
dc.descriptionShoelson, S.E., Herrero, L., Naaz, A., Obesity, inflammation, and insulin resistance (2007) Gastroenterology, 132, pp. 2169-2180
dc.descriptionLubrano, C., Genovesi, G., Specchia, P., Costantini, D., Mariani, S., Petrangeli, E., Obesity and metabolic comorbidities: environmental diseases? (2013) Oxid Med Cell Longev, 2013, p. 640673
dc.descriptionBensinger, S.J., Tontonoz, P., Integration of metabolism and inflammation by lipid-activated nuclear receptors (2008) Nature, 454, pp. 470-477
dc.descriptionWahli, W., Michalik, L., PPARs at the crossroads of lipid signaling and inflammation (2012) Trends Endocrinol Metab, 23 (7), pp. 351-363
dc.descriptionCalder, P.C., N-3 polyunsaturated fatty acids, inflammation, and inflammatory diseases (2006) Am J Clin Nutr, 83 (6), pp. 1505S-1519S
dc.descriptionDe Marzo, A.M., Marchi, V.L., Epstein, J.I., Nelson, W.G., Proliferative inflammatory atrophy of the prostate: implications for prostatic carcinogenesis (1999) Am J Pathol, 155 (6), pp. 1985-1992
dc.descriptionHokaiwado, N., Takeshita, F., Naiki-Ito, A., Asamoto, M., Ochiya, T., Shirai, T., Glutathione S-transferase Pi mediates proliferation of androgen-independent prostate cancer cells (2008) Carcinogenesis, 29 (6), pp. 1134-1138
dc.languageen
dc.publisherElsevier Inc.
dc.relationReproductive Toxicology
dc.rightsfechado
dc.sourceScopus
dc.titleHistopathological Alterations In The Prostates Of Mongolian Gerbils Exposed To A High-fat Diet And Di-n-butyl Phthalate Individually Or In Combination
dc.typeArtículos de revistas


Este ítem pertenece a la siguiente institución