Literature DB >> 2307317

Modulation of m-dinitrobenzene and m-nitrosonitrobenzene toxicity in rat Sertoli--germ cell cocultures.

D A Cave1, P M Foster.   

Abstract

Previous work has shown that m-dinitrobenzene is a testicular toxicant in rats in vivo, and in vitro produces comparable morphological changes in rat testicular Sertoli-germ cell cocultures. m-Dinitrobenzene is metabolized both in vivo and in the in vitro system to m-nitroaniline m-nitroaniline and m-nitroacetanilide. These metabolites do not provoke testicular toxicity in vivo or in vitro. We have therefore proposed a pathway for the metabolism of m-dinitrobenzene to m-nitroaniline and m-nitroacetanilide, which involved the intermediate m-nitrosonitrobenzene (1-nitroso-3-nitrobenzene, NNB). When tested, m-nitrosonitrobenzene, at equimolar doses to m-dinitrobenzene, produced similar morphological changes in the culture system to those exhibited by m-dinitrobenzene. However, m-nitrosonitrobenzene produced a greater toxicity than did m-dinitrobenzene (as measured by germ cell detachment). When the intracellular thiol levels were reduced in the cocultures pretreated with diethyl maleate, the toxicity of both m-dinitrobenzene and m-nitrosonitrobenzene was enhanced. In contrast, pretreatment of cocultures with agents known to increase cellular thiol (cysteamine) or scavenge reactive intermediates (cysteamine or ascorbate) reduced the toxicity of m-dinitrobenzene and m-nitrosonitrobenzene. We propose that m-dinitrobenzene requires metabolic activation before it can exert its toxicity to Sertoli cells, and it appears that the toxic species is m-nitrosonitrobenzene or a further metabolite of m-nitrosonitrobenzene.

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Year:  1990        PMID: 2307317     DOI: 10.1016/0272-0590(90)90245-f

Source DB:  PubMed          Journal:  Fundam Appl Toxicol        ISSN: 0272-0590


  2 in total

1.  Innovative Strategies to Develop Chemical Categories Using a Combination of Structural and Toxicological Properties.

Authors:  Monika Batke; Martin Gütlein; Falko Partosch; Ursula Gundert-Remy; Christoph Helma; Stefan Kramer; Andreas Maunz; Madeleine Seeland; Annette Bitsch
Journal:  Front Pharmacol       Date:  2016-09-21       Impact factor: 5.810

Review 2.  Reactions of oxidatively activated arylamines with thiols: reaction mechanisms and biologic implications. An overview.

Authors:  P Eyer
Journal:  Environ Health Perspect       Date:  1994-10       Impact factor: 9.031

  2 in total

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