Toxicological Sciences 2015-05-01

Reproductive Toxicity of Endosulfan: Implication From Germ Cell Apoptosis Modulated by Mitochondrial Dysfunction and Genotoxic Response Genes in Caenorhabditis elegans.

Hua Du, Meimei Wang, Lei Wang, Hui Dai, Min Wang, Wei Hong, Xinxin Nie, Lijun Wu, An Xu

Index: Toxicol. Sci. 145 , 118-27, (2015)

Full Text: HTML

Abstract

Endosulfan as a new member of persistent organic pollutants has been shown to induce reproductive dysfunction in various animal models. However, the action mechanism of endosulfan-produced reproductive toxicity remains largely unknown. This study was focused on investigating the reproductive toxicity induced by α-endosulfan and clarifying the role of mitochondria and genotoxic response genes in germ cell apoptosis of Caenorhabditis elegans. Our data showed that endosulfan induced a dose-dependent decrease of life span, fecundity, and hatchability, whereas the germ cell apoptosis was dose-dependently increased. The mitochondria membrane potential was disrupted by endosulfan, leading to a significant increase of germ cell apoptosis in mev-1(kn-1) mutant. However, the apoptotic effects of endosulfan were blocked in mutants of cep-1(w40), egl-1(n487), and hus-1(op241), indicating conserved genotoxic response genes played an essential role in endosulfan-induced germ cell apoptosis. Furthermore, exposure to endosulfan induced the accumulation of HUS-1::GFP foci and the germ cell cycle arrest. These findings provided clear evidence that endosulfan caused significant adverse effects on the reproduction system of C. elegans and increased germ cell apoptosis, which was regulated by mitochondrial dysfunction and DNA damage response genes. This study may help to understand the signal transduction pathways involved in endosulfan-induced reproductive toxicity. © The Author 2015. Published by Oxford University Press on behalf of the Society of Toxicology. All rights reserved. For Permissions, please e-mail: journals.permissions@oup.com.


Related Compounds

Related Articles:

3-(3-Hydroxy-4-methoxyphenyl)-4-(3,4,5-trimethoxyphenyl)-1,2,5-selenadiazole (G-1103), a novel combretastatin A-4 analog, induces G2/M arrest and apoptosis by disrupting tubulin polymerization in human cervical HeLa cells and fibrosarcoma HT-1080 cells.

2015-02-05

[Chem. Biol. Interact. 227 , 7-17, (2015)]

In vitro inhibition of lysine decarboxylase activity by organophosphate esters.

2014-07-01

[Biochem. Pharmacol. 92(3) , 506-16, (2014)]

Antiviral effect of methylated flavonol isorhamnetin against influenza.

2015-01-01

[PLoS ONE 10(3) , e0121610, (2015)]

Molecular mechanisms of sulbactam antibacterial activity and resistance determinants in Acinetobacter baumannii.

2015-03-01

[Antimicrob. Agents Chemother. 59(3) , 1680-9, (2015)]

ELF-MF attenuates quercetin-induced apoptosis in K562 cells through modulating the expression of Bcl-2 family proteins.

2014-12-01

[Mol. Cell Biochem. 397(1-2) , 33-43, (2014)]

More Articles...