Antioxidant activity of the organotellurium compound 3- 4-(N,N-dimethylamino)benzenetellurenyl propanesulfonic acid against oxidative stress in synaptosomal membrane systems and neuronal cultures.
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| Abstract |    :  
                  Antioxidant activities of 3-[4-(N,N-dimethylamino) benzenetellurenyl]propanesulfonic acid sodium salt (NDBT) were evaluated in solution, red blood cells, synaptosomal membranes, and cultured hippocampal neuronal cells after exposure to peroxynitrite (ONOO(-)) and hydroxyl radicals. The organotellurium compound NDBT possesses significant activity towards hydrogen peroxide and/or the hydroxyl radical in solution, demonstrated by inhibition of hydroxylation of terephthalic acid. In addition, the compound displayed great antioxidant abilities as shown by: reduction of ONOO(-)-induced 2,7-dichlorofluorescein (DCF) fluorescence in synaptosomes; complete prevention of lipid peroxidation in synaptosomes caused by OH radicals (TBARS), and significant prevention of protein oxidation caused by ONOO(-) and OH, indexed by the levels of protein carbonyls in synaptosomes and neuronal cells. The presence of the compound abolished neuronal cell death caused by ONOO(-). Further, the compound was effective in preventing the oxidative changes in synaptosomal membrane protein conformation and crosslinking (EPR spin labeling). Finally, the organotellurium molecule attenuated peroxynitrite-induced, luminol-dependent chemiluminescence in red blood cells--an index of cellular oxidation. These findings demonstrate the great potential of the antioxidant and are consistent with the notion that NDBT may have a role to play in modulating oxidative stress in neurodegenerative disorders, including Alzheimer's disease.  | 
        
| Year of Publication |    :  
                  2001 
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| Journal |    :  
                  Brain research 
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| Volume |    :  
                  911 
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| Issue |    :  
                  1 
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| Number of Pages |    :  
                  12-21 
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| Date Published |    :  
                  2001 
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| ISSN Number |    :  
                  0006-8993 
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| URL |    :  
                  https://linkinghub.elsevier.com/retrieve/pii/S0006-8993(01)02541-0 
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| DOI |    :  
                  10.1016/s0006-8993(01)02541-0 
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| Short Title |    :  
                  Brain Res 
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