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The Dimethylnitrosamine Induced Liver Fibrosis Model in the Rat
Published on: June 17, 2016
Dimethylnitrosamine-induced DNA damage and toxic cell death in cultured mouse hepatocytes
1Toxicology Program, College of Pharmacy, University of New Mexico, Albuquerque 87131-1066, USA.
Abstract:
Chronic exposure to dimethylnitrosamine produces hepatic tumors through recurrent DNA alkylation, whereas acute exposure can cause liver necrosis through mechanisms that remain largely unknown. Our laboratory recently demonstrated that DNA fragmentation occurs early on and may be a causal event in dimethylnitrosamine-induced necrosis in liver. A challenge to interpreting these results is that up to 30% of liver cells are non-parenchymal and could account for the observed DNA fragmentation. In the present study, we have examined whether dimethylnitrosamine induces early genomic DNA fragmentation in cultured mouse hepatocytes. Hepatic parenchymal cells isolated from male ICR mice were cultured in Williams E medium. DNA damage was assessed quantitatively as a fragmented fraction that was not sedimented at 27,000 x g, and qualitatively from agarose gel electrophoresis. Cellular response to DNA damage was assessed by measuring induction of the DNA repair enzyme DNA ligase. Toxic cell death was estimated from release of lactate dehydrogenase (LDH) or adenine nucleotides from cells prelabeled with [3H]adenine. Dimethylnitrosamine produced a twofold increase in [3H]adenine release by 6 h and LDH release at 36 h. DNA fragmentation and DNA ligase activity increased by as early as 1 h. The Ca(2+)-endonuclease inhibitor aurintricarboxylic acid and the Ca2+ chelator ethylenediamine tetraacetic acid (EDTA) prevented DNA fragmentation through 6 h and virtually abolished cytotoxicity through 30 h. DNA ligase induction was strongly associated with DNA fragmentation. Early increases in DNA fragmentation and DNA ligase were highly correlated with later toxic cell death. Such results strongly suggest that dimethylnitrosamine-induced fragmentation of DNA in target parenchymal cells is a causal factor in the toxic death of these liver cells.
Insights
Dimethylnitrosamine causes liver cell death by fragmenting DNA in hepatocytes. Inhibiting this DNA damage and repair response prevents cell death, suggesting a causal link in liver necrosis.
Area of Science:
- Hepatology
- Toxicology
- Molecular Biology
Background:
- Dimethylnitrosamine (DMN) causes liver tumors with chronic exposure but its acute toxicity mechanisms are unclear.
- Previous work suggested DNA fragmentation is an early event in DMN-induced liver necrosis.
- Non-parenchymal cells could confound studies on DMN's effect on hepatocytes.
Purpose of the Study:
- To investigate if DMN induces early genomic DNA fragmentation in cultured mouse hepatocytes.
- To determine the role of DNA fragmentation and repair in DMN-induced hepatotoxicity.
Main Methods:
- Primary mouse hepatocytes were cultured and exposed to DMN.
- DNA fragmentation was measured via ultracentrifugation and gel electrophoresis.
- Cellular response was assessed by DNA ligase activity, lactate dehydrogenase (LDH) release, and adenine nucleotide release.
Main Results:
- DMN increased DNA fragmentation and DNA ligase activity within 1 hour.
- Cell death markers (adenine nucleotide and LDH release) increased at 6 and 36 hours, respectively.
- Inhibitors of Ca(2+)-dependent endonuclease and chelators blocked DNA fragmentation and cytotoxicity.
Conclusions:
- DMN induces early DNA fragmentation specifically in hepatocytes.
- DNA fragmentation and subsequent repair (DNA ligase induction) are critical early events in DMN-induced liver cell death.
- Targeting DNA fragmentation may offer a strategy to mitigate DMN toxicity.

