N-Nitrosodiethylamine (DEN), a well-known hepatocarcinogen, is found in certain food products as such or as a metabolic byproduct. This study investigated the effects of DEN on sexual development, gametogenesis, and oocyte maturation in Japanese medaka (Oryzias latipes). DEN reduced the germ cell number dose-dependently during early stages of sexual differentiation in XX larvae, resulting in underdeveloped ovaries in adulthood at low doses. This effect was sex-specific as no such changes were seen in XY larvae. Furthermore, XX and XY larvae that were exposed at a low dose during early life showed a significant reduction in body weight in adulthood. Gonads in sexually immature adult medaka males and females exposed to DEN were in advanced stages in comparison to that of the controls. Gonado-somatic indices were significantly high in treated males and females. DEN induced oocyte maturation in vitro, which was inhibited by cordycepin, demonstrating that it stimulated oocyte maturation through polyadenylation of cyclin B mRNA as in the case of the endogenous maturation-inducing hormone. Altogether, our results have proven that DEN could disrupt or mimic the signaling pathways involved in germ cell development, proliferation, and maturation.

1.
Bergman Å, Heindel JJ, Jobling S, Kidd KA, Zoeller RT, Jobling SK: State of Science of Endocrine Disrupting Chemicals-2012. An assessment of the state of the science of endocrine disruptors prepared by a group of experts for the United Nations Environment Programme and World Health Organization (2013).
2.
Bodin J, Stene LC, Nygaard UC: Can exposure to environmental chemicals increase the risk of diabetes type 1 development? Biomed Res Int 2015:208947 (2015).
3.
Brionet F, Tyler CR, Palazzi X, Laillet B, Porcher JM, et al: Impacts of 17β-estradiol, including environmentally relevant concentrations, on reproduction after exposure during embryo-larval-, juvenile- and adult-life stages in zebrafish (Danio rerio). Aquat Toxicol 68:193-217 (2004).
4.
Brunnemann KD, Hecht SS, Hoffmann D: N-nitrosamines: environmental occurrence, in vivo formation and metabolism. J Toxicol Clin Toxicol 19:661-688 (1982).
5.
Bunton TE: Diethylnitrosamine (DEN) induced degenerative, prolifertive and neoplastic lesions in the liver of medaka (Oryzias latipes) following short-term exposure. Mar Environ Res 28:369-374 (1989).
6.
Cedergreen N, Christensen AM, Kamper A, Kudsk P, Mathiassen SK, et al: A review of independent action compared to concentration addition as reference models for mixtures of compounds with different molecular target sites. Environ Toxicol Chem 27:1621-1632 (2008).
7.
Couse JF, Korach KS: Estrogen receptor-mediates the detrimental effects of neonatal diethylstilbestrol (DES) exposure in the murine reproductive tract. Toxicol 205:55-63 (2004).
8.
Dellavalle CT, Xiao Q, Yang G, Shu XO, Aschebrook-Kilfoy B, et al: Dietary nitrate and nitrite intake and risk of colorectal cancer in the Shanghai Women's Health Study. Int J Cancer 134:2917-2926 (2014).
9.
Devlin RH, Nagahama Y: Sex determination and sex differentiation in fish: an overview of genetic, physiological, and environmental influences. Aquaculture 208:191-364 (2002).
10.
Espejo-Herrera N, Gràcia-Lavedan E, Boldo E, Aragonés N, Pérez-Gómez B, et al: Colorectal cancer risk and nitrate exposure through drinking water and diet. Int J Cancer 139:334-346 (2016).
11.
Fukada S, Sakai N, Adachi S, Nagahama Y: Steroidogenesis in the ovarian follicle of medaka (Oryzias latipes, a daily spawner) during oocyte maturation. Develop Growth Differ 36:81-88 (1994).
12.
Herbst AL, Ulfelder H, Poskanzer DC: Adenocarcinoma of the vagina. Association of maternal stilbestrol therapy with tumor appearance in young women. N Engl J Med. 284:878-881 (1971).
13.
Inoue-Choi M, Jones RR, Anderson KE, Cantor KP, Cerhan JR, et al: Nitrate and nitrite ingestion and risk of ovarian cancer among postmenopausal women in Iowa. Int J Cancer 137:173-182 (2015).
14.
Katsu Y, Yamashita M, Nagahama Y: Translational regulation of cyclin B mRNA by 17α, 20β-dihydroxy-4-pregnen-3-one (maturation-inducing hormone) during oocyte maturation in a teleost fish, the goldfish (Carassius auratus). Mol Cell Endocrin 15:879-885 (1999).
15.
Klip H, Verloop J, van Gool JD, Koster ME, Burger CW, van Leeuwen FE: Hypospadias in sons of women exposed to diethylstilbestrol in utero: a cohort study. Lancet 359:1102-1107 (2002).
16.
Kuge H, Richter JD: Cytoplasmic 3′ poly (A) addition induces 5′ cap ribose methylation: implications for translational control of maternal mRNA. EMBO J 14:6301-6310 (1995).
17.
Laurén DJ, Teh SJ, Hinton DE: Cytotoxicity phase of diethylnitrosamine-induced hepatic neoplasia in medaka. Cancer Res 50:5504-5514 (1990).
18.
Lea RG, Byers AS, Sumner RN, Rhind SM, Zhang Z, et al: Environmental chemicals impact dog semen quality in vitro and may be associated with a temporal decline in sperm motility and increased cryptorchidism. Sci Rep 6:31281 (2016).
19.
Liao DJ, Blanck A, Eneroth P, Gustafsson JA, Hällström IP: Diethylnitrosamine causes pituitary damage, disturbs hormone levels, and reduces sexual dimorphism of certain liver functions in the rat. Environ Health Persp 109:943 (2001).
20.
Lijinsky W: N-Nitroso compounds in the diet. Mutat Res 443:129-138 (1999).
21.
McMillen IC, MacLaughlin SM, Muhlhausler BS, Gentili S, Duffield JL, Morrison JL: Developmental origins of adult health and disease: the role of periconceptional and foetal nutrition. Bas Clin Pharmacol Toxicol 102:82-89 (2008).
22.
Newbold RR, Padilla-Banks E, Jefferson WN: Adverse effects of the model environmental estrogen diethylstilbestrol are transmitted to subsequent generations. Endocrinology 147: S11-S17 (2006).
23.
Paul-Prasanth B, Shibata Y, Horiguchi R, Nagahama Y: Exposure to diethylstilbestrol during embryonic and larval stages of medaka fish (Oryzias latipes) leads to sex reversal in genetic males and reduced gonad weight in genetic females. Endocrinology 152:707-717 (2011).
24.
Saito D, Morinaga C, Aoki Y, Nakamura S, Mitani H, et al: Proliferation of germ cells during gonadal sex differentiation in medaka: insights from germ cell-depleted mutant zenzai. Dev Biol 310:280-290 (2007).
25.
Sato T, Suzuki A, Shibata N, Sakaizumi M, Hamaguchi S: The novel mutant scl of the medaka fish, Oryzias latipes, shows no secondary sex characters. Zool Sci 25:299-306 (2008).
26.
Schmitt A, Nebreda AR: Signalling pathways in oocyte meiotic maturation. J Cell Sci 115:2457-2459 (2002).
27.
Suzuki A, Nakamoto M, Kato Y, Shibata N: Effects of estradiol-17β on germ cell proliferation and DMY expression during early sexual differentiation of the medaka Oryzias latipes. Zool Sci 22:791-796 (2005).
28.
Tokumoto T, Tokumoto M, Horiguchi R, Ishikawa K, Nagahama Y: Diethylstilbestrol induces fish oocyte maturation. Proc Nat Acad Sci USA 101:3686-3690 (2004).
29.
Tokumoto T, Tokumoto M, Nagahama Y: Induction and inhibition of oocyte maturation by EDCs in zebrafish. Reprod Biol Endocrinol 3:69 (2005).
30.
Twerdok LE, Burton DT, Gardner HS, Shedd TR, Wolfe MJ: The use of nontraditional assays in an integrated environmental assessment of contaminated ground water. Environ Toxicol Chem 16:1816-1820 (1997).
31.
Vandenberg LN, Colborn T, Hayes TB, Heindel JJ, Jacobs Jr DR, et al: Hormones and endocrine-disrupting chemicals: low-dose effects and nonmonotonic dose responses. Endocrine Rev 33:378-455 (2012).
32.
Wada H, Shimada A, Fukamachi S, Naruse K, Shima A: Sex-linked inheritance of the lf locus in the medaka fish (Oryzias latipes). Zoolog Sci 15:123-126 (1998).
33.
Yamamoto TO: Artificially induced sex-reversal in genotypic males of the medaka (Oryzias latipes). J Exp Zoo 123:571-594 (1953).
34.
Yamamoto TO, Suzuki H: The manifestation of the urinogenital papillae of the medaka (Oryzias latipes) by sex-hormones. Embryologia 214:133-144 (1955).
35.
Yamashita M, Mita K, Yoshida N, Kondo T: Molecular mechanisms of the initiation of oocyte maturation: general and species-specific aspects. Prog Cell Cycle Res 4:115-129 (2000).
36.
Zhou L, Zahid M, Anwar MM, Pennington KL, Cohen SM, et al: Suggestive evidence for the induction of colonic aberrant crypts in mice fed sodium nitrite. Nutr Cancer 68:105-112 (2016).
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