4.7 Article

Influence of a Roundup formulation on glyphosate effects on steroidogenesis and proliferation of bovine granulosa cells in vitro

期刊

CHEMOSPHERE
卷 188, 期 -, 页码 274-279

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.chemosphere.2017.09.007

关键词

Glyphosate; Cattle; Formulation; Granulosa cells; Toxicity; In vitro

资金

  1. Endowment of Howard M. & Adene R. Harrington Chair in Animal Science [21-58500]
  2. Oklahoma State University Agricultural (Agric.) Experiment (Exp.) Station (Sta.) Project [OKL02970]

向作者/读者索取更多资源

Glyphosate (N-phosphonomethyl-glycine) is a non-selective systemic herbicide widely used worldwide. The purpose ofthis study is to determine if glyphosate alone (GLPH) or in formulation with Roundup (G-RU) can affect granulosa cell proliferation and steroid production. Four experiments were conducted. In 'Exp. 1, 10 and 300 mu g/mL of GLPH had no effect (P > 0.05) on cell numbers, estradiol or progesterone production, whereas 10 and 300 mu g/mL of G-RU dramatically decreased (P < 0.05) cell numbers and estradiol and progesterone production. In Exp. 2, G-RU at 0.1 mu g/mL had no significant effect whereas G-RU at 10 mu g/mL decreased (P < 0:05) GC numbers, progesterone and estradiol production. In the absence of IGF1 but presence of FSH, 1 mu g/mL of G-RU decreased (P < 0.05) estradiol production, whereas in the presence of IGF1 and FSH, 1 mu g/mL of G-RU increased (P < 0.05) cell numbers, progesterone and estradiol production. In Exp. 3, IGF1 significantly increased cell numbers (by 2.8-fold) and estradiol (by 17.8-fold) and progesterone (by 6.1-fold) production. GLPH at 10 mu g/mL alone had no significant effect on FSH-induced (i.e., basal) or FSH plus IGF1-induced cell numbers, estradiol or progesterone production. However, G-RU at 10 mu g/mL significantly inhibited FSH plus IGF1-induced cell numbers, estradiol and progesterone production by 65%-91%. In Exp. 4, 48 h treatment of G-RU had no significant effect on viability of attached cells. In conclusion, the present studies demonstrate that GLPH and particularly G-RU may have the potential to impair reproductive function in cattle. (C) 2017 Elsevier Ltd. All rights reserved.

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