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Synchrotron FTIR spectroscopy reveals molecular changes in Escherichia coli upon Cu^2+ exposure 被引量:1
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作者 Xiao-Juan Hu Zhi-Xiao Liu +3 位作者 Ya-Di Wang Xue-Ling Li Jun Hu jun-hong lv 《Nuclear Science and Techniques》 SCIE CAS CSCD 2016年第3期45-52,共8页
Copper ions(e.g.,Cu^(2+)) have outstanding antibacterial properties,but the exact mechanism is rather complex and not fully understood.In this work,synchrotron Fourier transform infrared(FTIR) spectroscopy was used as... Copper ions(e.g.,Cu^(2+)) have outstanding antibacterial properties,but the exact mechanism is rather complex and not fully understood.In this work,synchrotron Fourier transform infrared(FTIR) spectroscopy was used as an analytical tool to investigate the CuCl_2-induced biochemical changes in Escherichia coli.Our spectral measurements indicated that this technique is sensitive enough to detect changes in membrane lipids,nucleic acids,peptidoglycans and proteins of Cu^(2+)-treated bacteria.Interestingly,for short-time treated cells,the effects on phospholipid composition were clearly shown,while no significant alterations of proteins,nucleic acids and peptidoglycans were found.PeakForce quantitative nano-mechanics mode atomic force microscopy(AFM)confirmed the changes in the topography and mechanical properties of bacteria upon the Cu^(2+) exposure.This study demonstrated that FTIR spectroscopy combined with AFM can provide more comprehensive evaluation on the biochemical and mechanical responses of bacteria to copper. 展开更多
关键词 CUCL2 红外光谱 大肠杆菌 同步 原子力显微镜 FTIR光谱 分子 曝光
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