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Host-mediated biofilm forming promotes post-graphene pathogen expansion via graphene micron-sheet
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作者 Kun YANG Jinghuan TIAN +6 位作者 Wei QU Bo LUAN Ke LIU Jun LIU Likui WANG Junhui JI Wei ZHANG 《Frontiers of Materials Science》 SCIE CSCD 2020年第2期221-231,共11页
Graphene is a potential candidate for applications in biomedical field.It is inevitable that graphene is in contact with the ubiquitous bacterial environment.More attention has been paid to the antimicrobial activity ... Graphene is a potential candidate for applications in biomedical field.It is inevitable that graphene is in contact with the ubiquitous bacterial environment.More attention has been paid to the antimicrobial activity of graphene derivatives(graphene oxide,reduced graphene oxide)than the interaction between graphene and bacteria.Herein,we explore interaction between graphene micron-sheet and bacteria from micro(gene expression)and macro(colonies)perspectives.Results demonstrate that graphene micron-sheet accelerates the biofilm forming thus promoting pathogen expansion toward both Gram-negative bacteria E.coli and Gram-positive bacteria S.aureus.The graphene micron-sheet acts as a“habitat”for increasing bacterial attachment and biofilm forming.For E.coli,graphene micron-sheet,firstly changes the integrity of periplasmic and outer membrane components,then makes membraneassociated and cell division genes increased,and finally promotes bacterial proliferation;For S.aureus,graphene micron-sheet can accelerate biofilm forming and develop bacterial expansion owing to the regulation of the quorum-sensing system and global regulatory proteins.The work can shed new light on the range of possible mode of actions,developing a better understanding of the capabilities of graphene micronstructures. 展开更多
关键词 graphene micron-sheet bacteria gene expression biofilm forming
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板料成形中新型润滑方法研究 被引量:4
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作者 郑静风 李少平 何丹农 《锻压技术》 CAS CSCD 北大核心 2003年第3期62-64,共3页
通过对板料成形两种润滑方式的分析 ,提出针对二者的作用机理 ,研究微米级粉体的隔离作用和纳米粉体的极压作用来得到新的润滑方法。利用拉深性能评定模拟试验机 ,证实了微米级粉体和纳米级粉体作为添加剂均有提高板料成形性能的作用 ,... 通过对板料成形两种润滑方式的分析 ,提出针对二者的作用机理 ,研究微米级粉体的隔离作用和纳米粉体的极压作用来得到新的润滑方法。利用拉深性能评定模拟试验机 ,证实了微米级粉体和纳米级粉体作为添加剂均有提高板料成形性能的作用 ,而二者的复合使用 。 展开更多
关键词 微米添加剂 纳米添加剂 板料成形 复合润滑 润滑油
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