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Taurine and vitamin C influence 8-nitroguanine brain expression following sub-chronic arsenic exposure in the mouse
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作者 Fengyuan Piao Guang Yang +3 位作者 Qiujuan Li Jianxin Ye xiance sun Ning MaO 《Neural Regeneration Research》 SCIE CAS CSCD 2009年第11期838-842,共5页
BACKGROUND: Arsenic-induced overproduction of reactive nitrogen species results in damage to biomacromolecules in tissues. This is one of major mechanisms of toxic effects due to arsenic. It is assumed that taurine a... BACKGROUND: Arsenic-induced overproduction of reactive nitrogen species results in damage to biomacromolecules in tissues. This is one of major mechanisms of toxic effects due to arsenic. It is assumed that taurine and vitamin C prevent overproduction of peroxynitrite (ONOO) and resist arseniasis by decreasing oxygen-free radical production. OBJECTIVE: To investigate the intervention effects of taurine and vitamin C on 8-nitroguanine (8-NO2-G) expression in the brain of mice exposed to arsenic. DESIGN, TIME AND SETTING: A randomized, controlled, animal experiment was performed at the Department of Occupational and Environmental Health, Dalian Medical University, China between March 2007 and July 2008. MATERIALS: As203, taurine, and vitamin C (Sigma, USA), rabbit polyclonal anti-8-NO2-G antibody and goat anti-rabbit IgG (Dojindo, Japan) were used in this study. METHODS: A total of 40 healthy, Kunming mice were equally and randomly assigned to four groups Mice in the As203 group received drinking water containing 4 mg/L As2O3. Mice in the taurine and vitamin C groups received 150 mg/kg taurine and 45 mg/kg vitamin C, respectively, by gavage, twice per week, and simultaneously received As2O3. Mice in the control group were administered normal drinking water. MAIN OUTCOME MEASURES: Histopathological changes in brain tissues of mice were observed by hematoxylin-eosin staining. 8-NO2-G expression in brain tissues was determined by immunohistochemistry. RESULTS: Abnormal, histopathological changes were observed in brain tissue of mice from the As2O3 group, which included axonal loss, cell shrinkage, and karyolysis. The above-described changes were minimal in the taurine and vitamin C groups. 8-NO2-G expression was significantly greater in brain tissue from the As2O3 group compared with the control group (P 〈 0.05), however, weak 8-NO2-G expression was observed in the taurine and vitamin C groups. CONCLUSION: Taurine or vitamin C protected against pathological changes and nucleic acid damage due to reactive nitrogen species in brain tissue of mice exposed to arsenic. 展开更多
关键词 AS2O3 NEUROTOXICITY 8-nitroguanine TAURINE vitamin C
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Concentrations of toxic heavy metals in ambient particulate matter in an industrial area of northeastern China
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作者 Fengyuan PIAO xiance sun +1 位作者 Shuang LIU Toru YAMAUCHI 《Frontiers of Medicine》 SCIE CSCD 2008年第2期207-210,共4页
This paper investigates concentrations of vari-ous heavy metals in ambient particulate matter(PM)and provide evidence for prevention from air pollution.The concentrations of heavy metal components in the PM were deter... This paper investigates concentrations of vari-ous heavy metals in ambient particulate matter(PM)and provide evidence for prevention from air pollution.The concentrations of heavy metal components in the PM were determined by inductively coupled plasma/Mass spectrometry(ICP/MS)from September 2000 to August 2002 in a northeast industrial city in China.Concen-trations of Cd,Mn,Pb,Ni,Cr and As in the PM were 9.3,461.9,588.7,69.5,205.7 and 57.4 ng/m3 in the indus-trial area,and 5.7,245.5,305.0,31.4,58.8 and 32.5 ng/m3 in the main road,respectively.Concentrations of these heavy metals except Cd were significantly higher in the industrial area and main road than those in the suburban area(P<0.05 or P<0.01).The change curves of the six heavy metal concentrations show their concentrations increased in the winter and spring,but decreased in the summer and autumn.The results indicate that concentra-tions of the metals in the PM are relatively high in the industrial area and main road. 展开更多
关键词 air pollution particulate matter heavy metals
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