Literature DB >> 12020596

In vitro toxicity of 7H-dibenzo[c,g]carbazole in human liver cell lines.

T O'Brien1, J Schneider, D Warshawsky, K Mitchell.   

Abstract

7H-Dibenzo[c,g]carbazole (DBC) is a model N-heterocyclic aromatic compound (NHA) which is both a hepatotoxin and hepatocarcinogen in rodents. The focus of this investigation was to determine whether human liver cell lines display differential sensitivities to DBC-induced toxicity. Treatment of cell lines with increasing DBC concentrations produced apoptosis only in HepG2 cells. Although DBC inhibited the clonogenic growth of all cell lines at high concentrations, only the survival of HepG2 cells was reduced at lower concentrations. DBC inhibited DNA synthesis in two (HepG2, HLF) of the three cell lines at lower concentrations and was effective only at a high concentration in Mahlavu cells. Differences in DBC uptake were not observed in any of the cell lines, suggesting that bioavailability was not a limiting factor. DBC-DNA adducts were not detected in HLF or Mahlavu cells at either low or high concentrations of DBC. Consistent with the DNA adduct data, RP-HPLC analysis indicated that DBC was metabolized to a lesser degree in the HLF and Mahlavu cells. These results suggest that human liver cell lines differ markedly in the ability to metabolize DBC to toxic species and that DBC-induced apoptosis is only observed in cells that produce detectable metabolites and DBC-DNA adducts.

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Year:  2002        PMID: 12020596     DOI: 10.1016/s0887-2333(02)00013-9

Source DB:  PubMed          Journal:  Toxicol In Vitro        ISSN: 0887-2333            Impact factor:   3.500


  2 in total

1.  Degradation of carbazole by microbial cells immobilized in magnetic gellan gum gel beads.

Authors:  Xia Wang; Zhonghui Gai; Bo Yu; Jinhui Feng; Changyong Xu; Yong Yuan; Zhixin Lin; Ping Xu
Journal:  Appl Environ Microbiol       Date:  2007-09-07       Impact factor: 4.792

2.  An efficient magnetically modified microbial cell biocomposite for carbazole biodegradation.

Authors:  Yufei Li; Xiaoyu Du; Chao Wu; Xueying Liu; Xia Wang; Ping Xu
Journal:  Nanoscale Res Lett       Date:  2013-12-11       Impact factor: 4.703

  2 in total

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