17
Views
26
CrossRef citations to date
0
Altmetric
Original Articles

Differences in xenobiotic detoxifying activities between bone marrow stromal cells from mice and rats: Implications for benzene‐induced hematotoxicity

, &
Pages 183-201 | Received 31 Jan 1995, Accepted 10 Apr 1995, Published online: 15 Oct 2009

References

  • Aksoy , M. 1989 . Hematotoxicity and carcinogenicity of benzene . Environ. Health Perspect. , 82 : 193 – 197 .
  • Allen , T. D. and Dexter , T. M. 1984 . The essential cells of the hemopoietic microenvironment . Exp. Hematol. , 12 : 517 – 521 .
  • Anderson , M. E. and Meister , A. 1989 . Glutathione monoesters . Anal. Biochem. , 183 : 16 – 20 .
  • Anderson , M. E. , Powrie , F. , Puri , R. N. and Meister , A. 1985 . Glutathione monoethyl ester: Preparation, uptake by tissues, and conversion to glutathione . Arch. Biochem. Biophys. , 239 : 538 – 548 .
  • Bergelson , S. , Pinkus , R. and Daniel , V. 1994 . Intracellular glutathione levels regulate Fos/Jun induction and activation of glutathione S‐transferase gene expression . Cancer Res. , 54 : 36 – 40 .
  • Bohm , J. M. , Vasiliou , V. , Nebert , D. W. , Tabor , M. W. , Liu , R‐M. and Shertzer , H. G. 1995 . Role of GSH levels in the oxidative stress response . Toxicologist , 15 : 27 – 28 .
  • Cronkite , E. P. , Bullis , J. E. , Inoue , T. and Drew , R. T. 1984 . Benzene inhalation produces leukemia in mice . Toxicol. Appl. Pharmacol. , 75 : 358 – 361 .
  • De Long , M. J. , Prochaska , H. J. and Talalay , P. 1986 . Induction of NAD(P)H: quinone reductase in murine hepatoma cells by phenolic antioxidants, azo dyes, and other chemoprotectors: A model system for the study of anticarcinogens . Proc. Natl. Acad. Sci. USA , 83 : 787 – 791 .
  • Erslev , A. J. and Weiss , L. 1983 . “ Structure and function of the marrow ” . In Hematology , Edited by: Williams , W. J. , Beutler , E. , Erslev , A. J. and Lichtman , M. A. 75 – 83 . New York : McGraw‐Hill .
  • Gaido , K. and Wierda , D. 1984 . In vitro effects of benzene metabolites on mouse bone marrow stromal cells . Toxicol. Appl. Pharmacol. , 76 : 45 – 55 .
  • Gillies , R. T. , Didier , N. and Denton , M. 1986 . Determination of cell number in monolayer cultures . Anal. Biochem. , 159 : 109 – 113 .
  • Greenberger , J. S. 1991a . The hematopoietic microenvironment . Crit. Rev. Oncol. Hematol. , 11 : 65 – 84 .
  • Greenberger , J. S. 1991b . Toxic effects on the hematopoietic microenvironment . Exp. Hematol. , 19 : 1101 – 1109 .
  • Griffith , O. W. 1981 . “ Depletion of glutathione by inhibition of biosynthesis ” . In Methods in enzymology , Edited by: Jakoby , W. B. Vol. 77 , 59 – 63 . New York : Academic Press .
  • Hissin , P. J. and Hilf , R. 1976 . A fluorometric method for determination of oxidized and reduced glutathione in tissues . Anal. Biochem. , 74 : 214 – 226 .
  • Hoffmann , D. , Brunnemann , K. D. and Hoffmann , I. 1989 . “ Significance of benzene in tobacco carcino‐genesis ” . In Advances in modern environmental toxicology. Benzene: Occupational and environmental hazards—Scientific update , Edited by: Mehlman , M. A. 99 – 112 . Princeton, N.J. : Princeton Scientific .
  • Huff , J. 1983 . National Toxicology Program. Technical Report on the Toxicology and Carcinogenesis Studies of Benzene (CAS No. 71–43–2) in F344/N Rats and B6C3F1 Mice (Gavage Studies) , Research Triangle Park, N.C. : National Institutes of Environmental Health Sciences .
  • Irons , R. D. , Dent , J. G. , Baker , T. S. and Rickert , D. E. 1980 . Benzene is metabolized and covalently bound in bone marrow in situ . Chem.‐Biol. Interact. , 30 : 241 – 245 .
  • Kalf , G. F. 1987 . Recent advances in the metabolism and toxicity of benzene . CRC Crit. Rev. Toxicol. , 18 : 141 – 159 .
  • Kalf , G. F. , Post , G. B. and Snyder , R. 1987 . Solvent toxicology: Recent advances in the toxicology of benzene, the glycol ethers and carbon tetrachloride . Annu. Rev. Pharmacol. Toxicol. , 27 : 399 – 427 .
  • Kensler , T. W. , Egner , P. A. , Dolan , P. M. , Groopman , J. D. and Roebuck , B. D. 1987 . Mechanism of protection against aflatoxin tumorigenicity in rats fed 5‐(2‐pyrazinyl)‐4‐methyl‐1,2‐dithio!‐3‐thione (Olitpraz) and related 1,2‐dithiol‐3‐thiones and 1,2‐dithiol‐3‐ones . Cancer Res. , 47 : 4271 – 4277 .
  • Li , Y. and Trush , M. A. 1992 . Alteration of cellular glutathione as a factor in hydroquinone‐induced cytotoxicity to primary cultured bone marrow stromal cells from DBA/2 mice . In Vitro Toxicol. A J. Mol. Cellular Toxicol. , 5 : 59 – 71 .
  • Li , Y. and Trush , M. A. 1993 . Oxidation of hydroquinone by copper: Chemical mechanism and biological effects . Arch. Biochem. Biophys. , 300 : 346 – 355 .
  • Li , Y. , Lafuente , A. and Trush , M. A. 1994 . Characterization of quinone reductase, glutathione and glutathione S‐transferase in human myeloid cell lines: Induction by 1,2‐dithiole‐3‐thione and effects on hydroquinone‐induced cytotoxicity . Life Sci. , 13 : 901 – 916 .
  • Lind , C. , Hochstein , P. and Ernster , L. 1982 . DT‐diaphorase as a quinone reductase: A cellular control device against semiquinone and superoxide radical formation . Arch. Biochem. Biophys. , 216 : 178 – 185 .
  • Lowry , O. H. , Rosebrough , N. J. , Farr , A. L. and Randall , R. J. 1951 . Protein measurement with the Folin phenol reagent . J. Biol. Chem. , 193 : 265 – 275 .
  • Maltoni , C. , Conti , B. and Cotti , G. 1983 . Benzene, a multipotential carcinogen: Results of long‐term bioassays performed at the Bologna Institute of Oncology . Am. J. Ind. Med. , 4 : 589 – 630 .
  • McDonald , T. A. , Waidyanatha , S. and Rappaport , S. M. 1993 . Production of benzoquinone adducts with hemoglobin and bone‐marrow proteins following administration of [13C6]benzene to rats . Carcinogenesis , 14 : 1921 – 1925 .
  • Melikian , A. A. , Prahalad , A. K. and Coleman , S. 1992 . Isolation and characterization of two benzene‐derived hemoglobin adducts in vivo in rats . Cancer Epidemiol. Biomarkers Prevent. , 1 : 307 – 313 .
  • Neun , D. J. , Penn , A. and Snyder , C. A. 1992 . Evidence for strain‐specific differences in benzene toxicity as a function of host target cell susceptibility . Arch. Toxicol. , 66 : 11 – 17 .
  • O'Brien , P. J. 1991 . Molecular mechanisms of quinone cytotoxicity . Chem.‐Biol. Interact. , 80 : 1 – 41 .
  • Paustenbach , D. J. , Bass , R. D. and Price , P. 1993 . Benzene toxicity and risk assessment, 1972–1992: Implications for future regulation . Environ. Health Perspect. , 101 (suppl. 6) : 177 – 200 .
  • Prochaska , H. J. and Santamaria , A. B. 1988 . Direct measurement of NAD(P)H: quinone reductase from cells cultured in microtiter wells: A screening assay for anticarcinogenic enzyme inducers . Anal. Biochem. , 169 : 328 – 336 .
  • Prochaska , H. J. and Talalay , P. 1988 . Regulatory mechanisms of monofunctional and bifunctional anti‐carcinogenic enzyme inducers in murine liver . Cancer Res. , 48 : 4776 – 4782 .
  • Sabourin , P. J. , Bechtold , W. E. , Birnbaum , L. S. , Lucier , G. and Henderson , R. F. 1988 . Differences in the metabolism and disposition of inhaled [3H] benzene by F344/N rats and B6C3F1 mice . Toxicol. Appl. Pharmacol. , 94 : 128 – 140 .
  • Schlosser , M. J. , Shurina , R. D. and Kalf , C. F. 1989 . Metabolism of phenol and hydroquinone to reactive products by macrophage peroxidase or purified prostalandin H synthase . Environ. Health Perspect. , 82 : 229 – 237 .
  • Shertzer , H. G. , Vasiliou , V. , Liu , R.‐M. , Tabor , M. W. and Nebert , D. W. 1995 . Enzyme induction by L‐buthionine(S,R)‐sulfoximine in cultured mouse hepatoma cells . Chem. Res. Toxicol. , 8 : 431 – 436 .
  • Shigenaga , M. K. , Hagen , T. M. and Ames , B. N. 1994 . Oxidative damage and mitochondrial decay in aging . Proc. Natl. Acad. Sci. USA , 91 : 10771 – 10778 .
  • Smith , M. T. , Yager , J. W. , Steinmetz , K. L. and Eastmond , D. A. 1989 . Peroxidase‐dependent metabolism of benzene's phenolic metabolites and its potential role in benzene toxicity and carcinogenicity . Environ. Health Perspect. , 82 : 23 – 29 .
  • Snyder , R. and Kalf , G. F. 1994 . A perspective on benzene leukemogenesis . CRC Crit. Rev. Toxicol. , 24 : 177 – 209 .
  • Subrahmanyam , V. V. , Ross , D. , Eastmond , D. A. and Smith , M. T. 1991 . Potential role of free radicals in benzene‐induced myelotoxicity and leukemia . Free Radical Biol. Med. , 11 : 495 – 515 .
  • Sullivan , A. K. , Claxton , D. , Shematek , G. and Wang , H. 1989 . Cellular composition of rat bone marrow stroma. Antigen‐defined subpopulations . Lab. Invest. , 60 : 667 – 676 .
  • Talalay , P. , De Long , M. T. and Prochaska , H. J. 1987 . Identification of a common chemical signal regulating the induction of enzymes at protect against chemical carcinogenesis . Proc. Natl. Acad. Sci. USA , 85 : 1050 – 1054 .
  • Thomas , D. J. , Reasor , M. J. and Wierda , D. 1989 . Macrophage regulation of myelopoiesis is altered by exposure to the benzene metabolite hydroquinone . Toxicol. Appl. Pharmacol. , 97 : 440 – 453 .
  • Thomas , D. J. , Sadler , R. , Subrahmanyam , V. V. , Siegel , D. , Reasor , M. J. , Wierda , D. and Ross , D. 1990 . Bone marrow stromal cell bioactivation and detoxification of the benzene metabolite hydroquinone: Comparison of macrophages and fibroblastoid cells . Mol. Pharmacol. , 37 : 255 – 262 .
  • Travis , C. C. , Quillen , J. L. and Arms , A. D. 1990 . Pharmacokinetics of benzene . Toxicol. Appl. Pharmacol. , 102 : 400 – 420 .
  • Trentin , J. J. 1971 . Determination of bone marrow stem cell differentiation by stroma hemopoietic inductive microenvironment . Am. J. Pathol. , 65 : 621 – 628 .
  • Twerdok , L. E. , Rembish , S. J. and Trush , M. A. 1992 . Induction of quinone reductase and glutathione in bone marrow cells by 1,2‐dithiole‐3‐thione: Effect on hydroquinone‐induced cytotoxicity . Toxicol. Appl. Pharmacol. , 112 : 273 – 281 .
  • Twerdok , L. E. , Rembish , S. J. and Trush , M. A. 1993 . Studies with 1,2‐dithiole‐3‐thione as a chemopro‐tector of hydroquinone‐induced toxicity to DBA/2‐derived bone marrow stromal cells . Environ. Health Perspect. , 101 : 172 – 177 .
  • Zhu , H. , Li , Y. and Trush , M. A. 1995 . Characterization of benzo(a)pyrene quinone‐induced toxicity to primary cultured bone marrow stromal cells from DBA/2 mice: Potential role of mitochondrial dysfunction . Toxicol. Appl. Pharmacol. , 130 : 108 – 120 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.