Literature DB >> 7828976

Characterisation of oxidative injury to an intestinal cell line (HT-29) by hydrogen peroxide.

A J Watson1, J N Askew, G I Sandle.   

Abstract

Reactive oxygen metabolites have been implicated in causing epithelial cell injury in colonic inflammation. A model of oxidant injury in intestinal epithelial cells has been developed in which HT-29-18-C1 cells are injured with graded concentrations of hydrogen peroxide and characterised by the MTT test. The MTT test was validated as a cytotoxicity assay and has a similar sensitivity to hydrogen peroxide induced injury as the assay of intracellular adenosine triphosphate. Exposure to a range of hydrogen peroxide concentrations (0.05-20 mM) for varying duration (5-120 min) showed that injury was dependent on time and concentration. The median lethal dose (LD50) for one hour exposure to hydrogen peroxide was approximately 0.1 mM. Injury from hydrogen peroxide was only partially reversible as determined by the MTT test and assay of cellular proliferation by crystal violet staining. There was an exponential loss of hydrogen peroxide when incubated with HT-29-18-C1 cells (t1/2 35 min). Experiments with 0.5 mg/ml aminotriazole and 0.5-2 mM buthionine sulphoximine suggested hydrogen peroxide breakdown was predominantly caused by catalase rather than glutathione peroxidase. Injury resulting from 1 mM hydrogen peroxide could be reduced by either coincubation of cells with 1,10-phenanthroline, an Fe2+ chelator, or preincubation with deferoxamine, and Fe3+ chelator, suggesting the participation of Fe2+ and Fe3+ in hydrogen peroxide induced injury. In conclusion, hydrogen peroxide induces injury in HT-29-18-C1 cells both directly and by generation of the hydroxyl radical.

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Year:  1994        PMID: 7828976      PMCID: PMC1375615          DOI: 10.1136/gut.35.11.1575

Source DB:  PubMed          Journal:  Gut        ISSN: 0017-5749            Impact factor:   23.059


  29 in total

1.  Xanthine oxidase-induced injury to endothelium: role of intracellular iron and hydroxyl radical.

Authors:  P R Kvietys; W Inauen; B R Bacon; M B Grisham
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Review 2.  Tissue destruction by neutrophils.

Authors:  S J Weiss
Journal:  N Engl J Med       Date:  1989-02-09       Impact factor: 91.245

Review 3.  On the participation of higher oxidation states of iron and copper in Fenton reactions.

Authors:  H C Sutton; C C Winterbourn
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4.  Blebbing, free Ca2+ and mitochondrial membrane potential preceding cell death in hepatocytes.

Authors:  J J Lemasters; J DiGuiseppi; A L Nieminen; B Herman
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Review 5.  Oxygen free radicals and iron in relation to biology and medicine: some problems and concepts.

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Authors:  P A Hyslop; D B Hinshaw; W A Halsey; I U Schraufstätter; R D Sauerheber; R G Spragg; J H Jackson; C G Cochrane
Journal:  J Biol Chem       Date:  1988-02-05       Impact factor: 5.157

7.  Re-examination and further development of a precise and rapid dye method for measuring cell growth/cell kill.

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8.  Endocytosis of superoxide dismutase is required in order for the enzyme to protect hepatocytes from the cytotoxicity of hydrogen peroxide.

Authors:  M E Kyle; D Nakae; I Sakaida; S Miccadei; J L Farber
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9.  Mitochondrial damage as a mechanism of cell injury in the killing of cultured hepatocytes by tert-butyl hydroperoxide.

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10.  Absorptive and mucus-secreting subclones isolated from a multipotent intestinal cell line (HT-29) provide new models for cell polarity and terminal differentiation.

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