Alterations in cellular lipid metabolism produce neutral lipid accumulation following exposure to the organochlorine compound trans-nonachlor in rat primary hepatocytes

Environ Toxicol. 2018 Sep;33(9):962-971. doi: 10.1002/tox.22583. Epub 2018 Jul 2.

Abstract

Recent epidemiological studies have revealed significant positive associations between exposure to organochlorine (OC) pesticides and occurrence of the metabolic syndrome and there are a growing number of animal-based studies to support causality. However, the cellular mechanisms linking OC compound exposure and metabolic dysfunction remain elusive. Therefore, the present study was designed to determine if direct exposure to three highly implicated OC compounds promoted hepatic steatosis, the hepatic ramification of the metabolic syndrome. First, the steatotic effect of p,p'-dichlorodiphenyldichloroethylene (DDE), oxychlordane, and trans-nonachlor was determined in freshly isolated rat primary hepatocytes. Exposure to trans-nonachlor significantly increased neutral lipid accumulation as opposed to DDE and oxychlordane. To determine possible mechanisms governing increased fatty acid availability, the effects of trans-nonachlor exposure on fatty acid uptake, de novo lipogenesis, triglyceride secretion, and fatty acid oxidation were explored. Trans-nonachlor did not significantly alter fatty acid uptake. However, insulin-stimulated de novo lipogenesis as well as basal expression of fatty acid synthase, a major regulator of lipogenesis were significantly increased following trans-nonachlor exposure. Interestingly, there was a significant decrease in fatty acid oxidation following trans-nonachlor exposure. This decrease in fatty acid oxidation was accompanied by a slight, but significant increase in oleic acid-induced cellular triglyceride secretion. Therefore, taken together, the present data indicate direct exposure to trans-nonachlor has a more potent pro-steatotic effect than exposure to DDE or oxychlordane. This pro-steatotic effect of trans-nonachlor appears to be predominately mediated via increased de novo lipogenesis and decreased fatty acid oxidation.

Keywords: de novo lipogenesis; fatty acid oxidation; hepatic steatosis; primary hepatocyte; trans-nonachlor.

MeSH terms

  • Animals
  • Chlordan / analogs & derivatives
  • Chlordan / toxicity
  • Dichlorodiphenyl Dichloroethylene / toxicity
  • Fatty Acid Synthase, Type I / metabolism
  • Fatty Acids / metabolism
  • Hepatocytes / drug effects
  • Hepatocytes / metabolism
  • Hydrocarbons, Chlorinated / toxicity*
  • Insulin / pharmacology
  • Lipid Metabolism / drug effects*
  • Lipogenesis / drug effects
  • Male
  • Oxidation-Reduction
  • Pesticides / toxicity*
  • Rats, Sprague-Dawley
  • Triglycerides / metabolism

Substances

  • Fatty Acids
  • Hydrocarbons, Chlorinated
  • Insulin
  • Pesticides
  • Triglycerides
  • Chlordan
  • oxychlordane
  • nonachlor
  • Dichlorodiphenyl Dichloroethylene
  • Fatty Acid Synthase, Type I