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Effects of Alloying Elements on the Volume Fraction of Ordered α_2 Phase Precipitated in Ti-Al-Sn-Zr Alloys
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作者 Jun ZHANG Na PENG +2 位作者 xinan wang Li LI Qingjiang wang 《Journal of Materials Science & Technology》 SCIE EI CAS CSCD 2007年第1期102-106,共5页
An ideal method has been established for calculating the precipitation of α2 ordered phase in near-α titanium alloys based on the theory on the critical electron concentration for the precipitation of α2 ordered ph... An ideal method has been established for calculating the precipitation of α2 ordered phase in near-α titanium alloys based on the theory on the critical electron concentration for the precipitation of α2 ordered phase in near-α titanium alloys. With complete precipitation of α2 phase in near-α titanium alloys, the alloys can be considered to be composed of two parts: (1) the α2 ordered phase with the stoichiometric atomic ratio of Ti3X; (2) the disorder solid solution with the critical composition in which the α2 ordered phase is just unable to precipitate. By using this method, the volume fractions of α2 ordered phase precipitated in Ti-Al, Ti-Sn, Ti-Al-Sn-Zr alloys with various AI, Sn and/or Zr contents have been calculated. The influences of AI and Sn on the precipitation of α2 ordered phase are discussed. The calculating results show substantial agreement with the experimental ones. 展开更多
关键词 Ordered α2 phase PRECIPITATION Electron concentration Titanium alloys
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Role of nitric oxide in the genotoxic response to chronic microcystin-LR exposure in human–hamster hybrid cells 被引量:6
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作者 Xiaofei wang Pei Huang +7 位作者 Yun Liu Hua Du xinan wang Meimei wang Yichen wang Tom K.Hei Lijun Wu An Xu 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2015年第3期210-218,共9页
Microcystin-LR (MC-LR) is the most abundant and toxic microcystin congener and has been classified as a potential human carcinogen (Group 2B) by the International Agency for Research on Cancer. However, the mechan... Microcystin-LR (MC-LR) is the most abundant and toxic microcystin congener and has been classified as a potential human carcinogen (Group 2B) by the International Agency for Research on Cancer. However, the mechanisms underlying the genotoxic effects of MC-LR during chronic exposure are still poorly understood. In the present study, human-hamster hybrid (AL) cells were exposed to MC-LR for varying lengths of time to investigate the role of nitrogen radicals in MC-LR-induced genotoxicity. The mutagenic potential at the CD59 locus was more than 2-fold higher (p 〈 0.01) in AL ceUs exposed to a cytotoxic concentration (1 μmol/L) of MC-LR for 30 days than in untreated control ceils, which was consistent with the formation of micronucleus. MC-LR caused a dose-dependent increase in nitric oxide (NO) production in treated cells. Moreover, this was blocked by concurrent treatment with the NO synthase inhibitor NC-methyl-L-arginine (L-NMMA), which suppressed MC-LR- induced mutations as well. The survival of mitochondrial DNA-depleted (pO) AL ceils was markedly decreased by MC-LR treatment compared to that in AL cells, while the CD59 mutant fraction was unaltered. These results provided clear evidence that the genotoxicity associated with chronic MC-LR exposure in mammalian cells was mediated by NO and might be considered as a basis for the development of therapeutics that prevent carcinogenesis. 展开更多
关键词 Microcystin-LR (MC-LR) Chronic exposure Genotoxicity Nitric oxide
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