Literature DB >> 28050775

Neuroprotective Efficacy of Mitochondrial Antioxidant MitoQ in Suppressing Peroxynitrite-Mediated Mitochondrial Dysfunction Inflicted by Lead Toxicity in the Rat Brain.

Arpan Kumar Maiti1,2, Nimai Chandra Saha3, Sunil S More4, Ashish Kumar Panigrahi5, Goutam Paul6.   

Abstract

Lead (Pb) is one of the most pollutant metals that accumulate in the brain mitochondria disrupting mitochondrial structure and function. Though oxidative stress mediated by reactive oxygen species remains the most accepted mechanism of Pb neurotoxicity, some reports suggest the involvement of nitric oxide (•NO) and reactive nitrogen species in Pb-induced neurotoxicity. But the impact of Pb neurotoxicity on mitochondrial respiratory enzyme complexes remains unknown with no relevant report highlighting the involvement of peroxynitrite (ONOO-) in it. Herein, we investigated these effects in in vivo rat model by oral application of MitoQ, a known mitochondria-specific antioxidant with ONOO- scavenging activity. Interestingly, MitoQ efficiently alleviated ONOO--mediated mitochondrial complexes II, III and IV inhibition, increased mitochondrial ATP production and restored mitochondrial membrane potential. MitoQ lowered enhanced caspases 3 and 9 activities upon Pb exposure and also suppressed synaptosomal lipid peroxidation and protein oxidation accompanied by diminution of nitrite production and protein-bound 3-nitrotyrosine. To ascertain our in vivo findings on mitochondrial dysfunction, we carried out similar experiments in the presence of different antioxidants and free radical scavengers in the in vitro SHSY5Y cell line model. MitoQ provided better protection compared to mercaptoethylguanidine, N-nitro-L-arginine methyl ester and superoxide dismutase suggesting the predominant involvement of ONOO- compared to •NO and O2•-. However, dimethylsulphoxide and catalase failed to provide protection signifying the noninvolvement of •OH and H2O2 in the process. The better protection provided by MitoQ in SHSY5Y cells can be attributed to the fact that MitoQ targets mitochondria whereas mercaptoethylguanidine, N-nitro-L-arginine methyl ester and superoxide dismutase are known to target mainly cytoplasm and not mitochondria. Taken together the results from the present study clearly brings out the potential of MitoQ against ONOO--induced toxicity upon Pb exposure indicating its therapeutic potential in metal toxicity.

Entities:  

Keywords:  Lead; MitoQ; Mitochondrial electron transport chain; Neurotoxicity; Nitrosative stress; Peroxynitrite

Mesh:

Substances:

Year:  2017        PMID: 28050775     DOI: 10.1007/s12640-016-9692-7

Source DB:  PubMed          Journal:  Neurotox Res        ISSN: 1029-8428            Impact factor:   3.911


  63 in total

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Authors:  G C Brown; V Borutaite
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2.  Lead-induced hypertension: interplay of nitric oxide and reactive oxygen species.

Authors:  H C Gonick; Y Ding; S C Bondy; Z Ni; N D Vaziri
Journal:  Hypertension       Date:  1997-12       Impact factor: 10.190

3.  Alterations in some membrane properties in rat brain following exposure to lead.

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Authors:  J Boczkowski; C L Lisdero; S Lanone; A Samb; M C Carreras; A Boveris; M Aubier; J J Poderoso
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7.  Effects of short-term and subchronic lead poisoning on nitric oxide metabolites and vascular responsiveness in rat.

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Authors:  Ali M Sharifi; Seyed Hadi Mousavi; Masoomeh Bakhshayesh; Fatemeh Khakinegad Tehrani; Masoud Mahmoudian; Shahrbanoo Oryan
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Review 9.  Lead hazards for pregnant women and children: part 1: immigrants and the poor shoulder most of the burden of lead exposure in this country. Part 1 of a two-part article details how exposure happens, whom it affects, and the harm it can do.

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10.  Peroxynitrite-mediated tyrosine nitration catalyzed by superoxide dismutase.

Authors:  H Ischiropoulos; L Zhu; J Chen; M Tsai; J C Martin; C D Smith; J S Beckman
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