Title of article :
The Cytotoxicity of Nitroxyl: Possible Implications for the Pathophysiological Role of NO
Author/Authors :
Wink، نويسنده , , David A. and Feelisch، نويسنده , , Martin and Fukuto، نويسنده , , Jon and Chistodoulou، نويسنده , , Danae and Jourdʹheuil، نويسنده , , David and Grisham، نويسنده , , Matthew B. and Vodovotz، نويسنده , , Yoram and Cook، نويسنده , , John A. and Krishna، نويسنده , , Murali and DeGraff، نويسنده , , William G. and Kim، نويسنده , , SungMee and Gamson، نويسنده , , Janet L. Mitchell، نويسنده , , James B.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1998
Pages :
9
From page :
66
To page :
74
Abstract :
In addition to the broad repertoire of regulatory functions nitric oxide (NO) serves in mammalian physiology, thel-arginine:NO pathway is also involved in numerous pathophysiological mechanisms. While NO itself may actually protect cells from the toxicity of reactive oxygen radicals in some cases, it has been suggested that reactive nitrogen oxide species formed from nitric oxide synthase (NOS) can be cytotoxic. In addition to NO, the one electron reduction product NO−has been proposed to be formed from NOS. We investigated the potential cytotoxic role of nitroxyl (NO−), using the nitroxyl donor Angelisʹs salt, (AS; sodium trioxodinitrate, Na2N2O3) as the source of NO−. AS was found to be cytotoxic to Chinese hamster V79 lung fibroblast cells over a concentration range of 2–4 mM. The presence of equimolar ferricyanide (Fe(III)(CN6)3−), which converts NO−to NO, afforded dramatic protection against AS-mediated cytotoxicity. Treatment of V79 cells withL-buthionine sulfoximine to reduce intracellular glutathione markedly enhanced AS cytotoxicity, which suggests that GSH is critical for cellular protection against the toxicity of NO−. Further experiments showed that low molecular weight transition metal complexes associated with the formation of reactive oxygen species are not involved in AS-mediated cytotoxicity since metal chelators had no effect. However, under aerobic conditions, AS was more toxic than under hypoxic conditions, suggesting that oxygen dramatically enhanced AS-mediated cytotoxicity. At a molecular level, AS exposure resulted in DNA double strand breaks in whole cells, and this effect was completely prevented by coincubation of cells with ferricyanide or Tempol. The data in this study suggest that nitroxyl may contribute to the cytotoxicity associated with an enhanced expression of thel-arginine:NO pathway under different biological conditions.
Journal title :
Archives of Biochemistry and Biophysics
Serial Year :
1998
Journal title :
Archives of Biochemistry and Biophysics
Record number :
1611573
Link To Document :
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