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Low-dose gold nanoparticles exert subtle endocrine-modulating effects on the ovarian steroidogenic pathway ex vivo independent of oxidative stress. Nanotoxicology 2014 Dec;8(8):856-66

Date

09/03/2013

Pubmed ID

23992423

Pubmed Central ID

PMC4340664

DOI

10.3109/17435390.2013.837208

Scopus ID

2-s2.0-84904231210 (requires institutional sign-in at Scopus site)   12 Citations

Abstract

Gold nanoparticles (GNPs) have gained considerable attention for application in science and industry. However, the untoward effects of such particles on female fertility remain unclear. The objectives of this study were to (1) examine the effects of 10-nm GNPs on progesterone and estradiol-17β accumulation by rat ovaries ex vivo and (2) to identify the locus/loci whereby GNPs modulate steroidogenesis via multiple-reference gene quantitative real-time RT-PCR. Regression analyses indicated a positive relationship between both Star (p < 0.05, r(2) = 0.278) and Cyp11a1 (p < 0.001, r(2) = 0.366) expression and P4 accumulation upon exposure to 1.43 × 10(6) GNPs/mL. Additional analyses showed that E2 accumulation was positively associated with Hsd3b1 (p < 0.05, r(2) = 0.181) and Cyp17a1 (p < 0.01, r(2) = 0.301) expression upon exposure to 1.43 × 1(3) and 1.43 × 10(9) GNPs/mL, respectively. These results suggest a subtle treatment-dependent impact of low-dose GNPs on the relationship between progesterone or estradiol-17β and specific steroidogenic target genes, independent of oxidative stress or inhibin.

Author List

Larson JK, Carvan MJ 3rd, Teeguarden JG, Watanabe G, Taya K, Krystofiak E, Hutz RJ

Author

Reinhold J. Hutz in the Biological Sciences department at University of Wisconsin - Milwaukee




MESH terms used to index this publication - Major topics in bold

Animals
Estradiol
Female
Gold
Hormones
Inhibins
Linear Models
Metal Nanoparticles
Ovary
Progesterone
Rats
Rats, Sprague-Dawley