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<i>Cedecea lapagei</i>in a Patient with Multiple Injuries: Report of a Rare Case
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作者 Xiaofan Xu Kaiyue Chang +9 位作者 dongxue song Guangtong Tian Xiaohang Hu Liqing Jiang Bin Zhang Qingli Bie Shuhua Lu Xiaozhe Li Haixin Dong Chengqiang Jin 《Journal of Biosciences and Medicines》 2021年第11期1-5,共5页
<em>Cedecea lapagei </em>(<em>C. lapagei</em>) is an opportunistic pathogen in old patients with many comorbid diseases and the immunosuppressed. It is a gram-negative, facultative anaerobe bac... <em>Cedecea lapagei </em>(<em>C. lapagei</em>) is an opportunistic pathogen in old patients with many comorbid diseases and the immunosuppressed. It is a gram-negative, facultative anaerobe bacterium of the <em>Enterobacteriaceae</em> family. We present a rare case of a patient with multiple injuries, <em>C. lapagei</em> was found from the exudate of the wound, what’s more, the <em>Proteus vulgaris</em> was also found in blood culture medium at the same time. According to the available literature, this is the first case of simultaneous infection of two bacteria including <em>C. lapagei </em>and <em>Proteus vulgaris</em> from the exudate of the traumatic wound. 展开更多
关键词 C. lapagei Cedecea Proteus vulgaris EXUDATE
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镧对铽荧光增强效应测定药物加替沙星胶囊中的加替沙星含量
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作者 赵悦辉 李烨 +7 位作者 谭博 马丽丽 王冠乔 李刚 宋冬雪 AbdullahAbdu Ahmed 郑极慧 吕玉光 《药物资讯》 2012年第2期15-20,共6页
探讨第四代喹诺酮类药物加替沙星与稀土离子铽离子形成的配合物的荧光特性。应用荧光分光光度计测定药物加替沙星与稀土离子铽离子形成的配合物的荧光强度,通过加入表面活性剂、加入共发光离子La3+、改变溶液的pH等增敏方法选择最佳条... 探讨第四代喹诺酮类药物加替沙星与稀土离子铽离子形成的配合物的荧光特性。应用荧光分光光度计测定药物加替沙星与稀土离子铽离子形成的配合物的荧光强度,通过加入表面活性剂、加入共发光离子La3+、改变溶液的pH等增敏方法选择最佳条件。镧对该体系具有较强的荧光增强效应,最佳的pH值为7.5,选用0.1 mol·L–1 NH4Cl-HCl效果最佳,加替沙星的最佳浓度为1.0*10–6 mol·L–1。对荧光新体系的荧光增强作用的机理进行了初步探讨,最终建立了Tb3+-La3+-GFLX-SDS新体系,上述研究对于稀土元素分析、生物和药物分析都具有潜在的应用价值,为稀土和喹诺酮类药物配合物的相关研究提供了一定的理论和实验基础,可以用于测定人工合成样品和制剂的含量,该方法选择性好,灵敏度高,结果令人满意。 展开更多
关键词 稀土离子 喹诺酮类 加替沙星 荧光分光光度法
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Plasmon Bi in-situ anchored on BiOCl nanosheets assembled microspheres towards optimized photothermal-photocatalytic performance
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作者 dongxue song Mingxia Li +5 位作者 Fan Yang Menghan Yu Zhenzi Li Jie Chen Xiaoshuang Zhang Wei Zhou 《Chinese Chemical Letters》 SCIE CAS CSCD 2024年第2期469-476,共8页
Interface engineering is of great importance to improve the photocatalytic performance.Herein,in-situ formation plasmon Bi/BiOCl nanosheets assembled heterojunction microspheres are fabricated via facile reductive sol... Interface engineering is of great importance to improve the photocatalytic performance.Herein,in-situ formation plasmon Bi/BiOCl nanosheets assembled heterojunction microspheres are fabricated via facile reductive solvothermal approach.The aldehyde group in the DMF structure is used to exert the weak reducing property of the solvent and thus strip out the metal Bi in BiOCl.The metal Bi is anchored on surface of BiOCl firmly due to in-situ formation engineered interface,which could realize efficient charge transfer channel.The resultant Bi/BiOCl heterojunctions assemblies with narrow bandgap of 3.05 eV and mesoporous structure extend the photoresponse to visible light region and could provide sufficient surface active sites.The visible-light-driven photocatalytic degradation of high-toxic norfloxacin for Bi/BiOCl heterojunctions is up to 95.5%within 20 min,representing several times that of pristine BiOCl nanosheets and the physical mixture.It is attributed to the in-situ formation of Bi/BiOCl heterojunctions and surface plasmon resonance(SPR)effect of plasmon Bi promoting charge transfer,and the obvious photothermal effect promoting the photocatalytic reaction,which are verified by experimental and density functional theory(DFT)calculations.This strategy provides ideal perspectives for fabricating metal/semiconductor heterojunctions photocatalysts with high-performance. 展开更多
关键词 Photocatalysis BiOCl Heterojunction Plasmon Bi Mesoporous structure
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