本研究旨在探究线粒体复合物Ⅰ(ComplexⅠ,CⅠ)的核心结构蛋白NADH脱氢酶铁硫蛋白4(NADH Dehydrogenase(Ubiquinone)Fe S protein 4,NDUFS4)在涡虫成体干细胞功能维持与神经再生过程中的作用。通过克隆获得东亚三角涡虫(Dugesia sp.)ndu...本研究旨在探究线粒体复合物Ⅰ(ComplexⅠ,CⅠ)的核心结构蛋白NADH脱氢酶铁硫蛋白4(NADH Dehydrogenase(Ubiquinone)Fe S protein 4,NDUFS4)在涡虫成体干细胞功能维持与神经再生过程中的作用。通过克隆获得东亚三角涡虫(Dugesia sp.)ndufs4基因并进行序列及结构预测分析,结果显示其编码蛋白在保守结构域和关键氨基酸位点高度保守。采用RNA干扰技术持续敲降ndufs4表达,测定再生涡虫胚基(blastema)生长速率,并结合原位杂交与免疫组织化学等实验技术检测成体干细胞(Neoblasts)的增殖与分化、神经再生情况。结果表明,ndufs4敲降导致涡虫再生速率显著减慢,神经再生明显受损;同时,干细胞标记基因表达水平下降,干细胞分化进程受阻。上述结果说明,NDUFS4是维持涡虫成体干细胞群体功能及促进神经再生的必需蛋白,在生物再生中发挥重要调控功能。展开更多
Spark plasma sintering method (SPS) was used to consolidate mixed W-5.6Ni-1.4Fe (mass fraction, %) powders from commercial fine elemental powders, and both the densification behavior and microstructure evolution i...Spark plasma sintering method (SPS) was used to consolidate mixed W-5.6Ni-1.4Fe (mass fraction, %) powders from commercial fine elemental powders, and both the densification behavior and microstructure evolution in sintering were investigated at different heating rates. The results show that the SPS densification process can be divided into three stages. At the initial unshrinking stage, fast heating generates instantaneous discharge and locally inhomogeneous temperature distribution in solid-state powder particles, enhancing later densification; during the intermediate solid state sintering stage, diffusion is more sufficient in the slow-heated SPS process; at the final transient liquid-phase sintering stage, tungsten grains become sphered and coarsen rapidly, but fast heating helps maintain rather small grain sizes.展开更多
文摘本研究旨在探究线粒体复合物Ⅰ(ComplexⅠ,CⅠ)的核心结构蛋白NADH脱氢酶铁硫蛋白4(NADH Dehydrogenase(Ubiquinone)Fe S protein 4,NDUFS4)在涡虫成体干细胞功能维持与神经再生过程中的作用。通过克隆获得东亚三角涡虫(Dugesia sp.)ndufs4基因并进行序列及结构预测分析,结果显示其编码蛋白在保守结构域和关键氨基酸位点高度保守。采用RNA干扰技术持续敲降ndufs4表达,测定再生涡虫胚基(blastema)生长速率,并结合原位杂交与免疫组织化学等实验技术检测成体干细胞(Neoblasts)的增殖与分化、神经再生情况。结果表明,ndufs4敲降导致涡虫再生速率显著减慢,神经再生明显受损;同时,干细胞标记基因表达水平下降,干细胞分化进程受阻。上述结果说明,NDUFS4是维持涡虫成体干细胞群体功能及促进神经再生的必需蛋白,在生物再生中发挥重要调控功能。
基金Project (2010CB635104) supported by the National Basic Research Program of ChinaProject (2007AA03Z112) supported by the National High-Tech Research and Development Program of China+2 种基金Project (9140A18040709JW1601) supported by the Advanced Research Fund of DOD, ChinaProject (2009ZZ0019) supported by the Fundamental Research Funds for the Central Universities, ChinaProject (NCET-10-0364) supported by the Program for New Century Excellent Talents in University, China
文摘Spark plasma sintering method (SPS) was used to consolidate mixed W-5.6Ni-1.4Fe (mass fraction, %) powders from commercial fine elemental powders, and both the densification behavior and microstructure evolution in sintering were investigated at different heating rates. The results show that the SPS densification process can be divided into three stages. At the initial unshrinking stage, fast heating generates instantaneous discharge and locally inhomogeneous temperature distribution in solid-state powder particles, enhancing later densification; during the intermediate solid state sintering stage, diffusion is more sufficient in the slow-heated SPS process; at the final transient liquid-phase sintering stage, tungsten grains become sphered and coarsen rapidly, but fast heating helps maintain rather small grain sizes.