4.5 Article

Iodoacetic acid affects estrous cyclicity, ovarian gene expression, and hormone levels in mice

期刊

BIOLOGY OF REPRODUCTION
卷 105, 期 4, 页码 1030-1042

出版社

OXFORD UNIV PRESS INC
DOI: 10.1093/biolre/ioab108

关键词

disinfection byproducts; iodoacetic acid; ovary; estrous cycle; steroidogenesis

资金

  1. National Institutes of Health [NIH R21 ES028963, NIH T32 ES007326]
  2. Environmental Toxicology Fellowship

向作者/读者索取更多资源

Exposure to Iodoacetic acid altered estrous cyclicity, ovarian gene expression, and estradiol levels in mice, leading to changes in apoptotic factors, cell cycle regulators, steroidogenic factors, estrogen receptors, and oxidative stress markers.
Iodoacetic acid (IAA) is a water disinfection byproduct that is an ovarian toxicant in vitro. However, information on the effects of IAA on ovarian function in vivo was limited. Thus, we determined whether IAA exposure affects estrous cyclicity, steroidogenesis, and ovarian gene expression in mice. Adult CD-1 mice were dosed with water or IAA (0.5-500 mg/L) in the drinking water for 35-40 days during which estrous cyclicity was monitored for 14 days. Ovaries were analyzed for expression of apoptotic factors, cell cycle regulators, steroidogenic factors, estrogen receptors, oxidative stress markers, and a proliferation marker. Sera were collected to measure pregnenolone, androstenedione, testosterone, estradiol, inhibin B, and follicle-stimulating hormone (FSH) levels. IAA exposure decreased the time that the mice spent in proestrus compared to control. IAA exposure decreased expression of the proapoptotic factor Bok and the cell cycle regulator Ccnd2 compared to control. IAA exposure increased expression of the proapoptotic factors Bax and Aimf1, the antiapoptotic factor Bcl2110, the cell cycle regulators Ccna2, Ccnb1, Ccne1, and Cdk4, and estrogen receptor Esr1 compared to control. IAA exposure decreased expression of Sod1 and increased expression of Cat, Gpx and Nrf2. IAA exposure did not affect expression of Star, Cyp11a1, Cyp17a1, Hsd17b1, Hsd3b1, Esr2, or Ki67 compared to control. IAA exposure decreased estradiol levels, but did not alter other hormone levels compared to control. In conclusion, IAA exposure alters estrous cyclicity, ovarian gene expression, and estradiol levels in mice.

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