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C_(60)对体外培养癌细胞的光致作用研究 被引量:6
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作者 钱凯先 严庆丰 +1 位作者 黄文栋 李文铸 《生物化学与生物物理进展》 SCIE CAS CSCD 北大核心 1997年第3期237-241,共5页
研究结果表明用C60 磷脂酰胆碱与体外培养的HeLa细胞融合后 ,以 4 0 0 0lx光强度激发C60(C60 浓度 2 0mg/L)对HeLa细胞具有显著的光致杀伤作用 .生化测定证实光激发C60 导致膜蛋白巯基含量减少、膜脂过氧化、丙二醛含量增高 ,SDS PAGE... 研究结果表明用C60 磷脂酰胆碱与体外培养的HeLa细胞融合后 ,以 4 0 0 0lx光强度激发C60(C60 浓度 2 0mg/L)对HeLa细胞具有显著的光致杀伤作用 .生化测定证实光激发C60 导致膜蛋白巯基含量减少、膜脂过氧化、丙二醛含量增高 ,SDS PAGE证明膜蛋白交联 ,荧光偏振显示膜流动性降低 ,电镜超微膜结构破坏 ,经MTT法检测 ,大部分细胞死亡 .C60 的强烈光致作用证实了Arbogast等认为光激发C60 可产生单线态氧的观态 . 展开更多
关键词 富勒烯 癌细胞 光致作用 物理化学生物学
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Hydrogen production by draTGB hupL double mutant of Rhodospirillum rubrum under different light conditions 被引量:1
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作者 ZHU Ruiyan WANG Di +1 位作者 ZHANG Yaoping LI Jilun 《Chinese Science Bulletin》 SCIE EI CAS 2006年第21期2611-2618,共8页
To increase H2 yield of Rhodospirillum rubrum in two-stage hydrogen production process, two deletion mutants were constructed. One is single mutant designated R. rubrum UR801 that deleted hupL gene encoding the large ... To increase H2 yield of Rhodospirillum rubrum in two-stage hydrogen production process, two deletion mutants were constructed. One is single mutant designated R. rubrum UR801 that deleted hupL gene encoding the large subunit of uptake hy- drogenase, and the other is a double mutant desig- nated R. rubrum UR805 lacked both draTGB encod- ing regulators for the activity of nitrogenase and hupL. Comparing H2 yields of two mutants with R. rubrum UR2 (wild type) and UR472 (ΔdraTGB) under differ- ent light conditions, the results showed that the H2 yield of R. rubrum UR801 under continuous light is the highest (5700 mL of H2 per liter culture), and it is 1.56, 2.24 and 2.32-fold that of R. rubrum UR2, UR472 and UR805, respectively. However, the total H2 yield of R. rubrum UR805 in two-stage hydrogen production process is the highest (4303 mL/L), and it is 1.35, 1.21 and 1.04-fold that of R. rubrum UR2, UR801 and UR472, respectively. Thus, R. rubrum UR805 might be a valuable strain to produce a large amount of hydrogen in two-stage hydrogen produc- tion process. 展开更多
关键词 深红红螺菌 光致作用 固氮酶 氢化酶
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