典型文献
Impact of Hierarchical Architecture of Cryptotermes brevis Wing on the Modulation of Bacterial Adhesion
文献摘要:
The wing architecture is an inspiration to fabricate novel materials with exquisite properties.The current study characterizes the structure and biological function of a termite's wing.The topography of the surface of the wing was studied by electron microscopy,and surface profilometer.The physicochemical property of the surface was analyzed by Fourier transform infrared spectroscopy,X-ray diffraction spectroscopy,energy-dispersive X-ray spectroscopy,and gas chromatography-mass spectrometry analysis of the epicuticle content.Water Contact Angle measurement confirmed the hydrophobicity of the wing surface.When microorganisms come in contact with the surface of the wing,they adhere to the wing surface due to cell surface properties of their own and the surface chemistry of the wing.The current study reported the adhesion behavior of two bacterial species.The bactericidal activity of the wing was confirmed by counting the bacterial cell viability and examination under a confocal laser scanning microscope.Adhesion of bacteria was observed under the electron microscope.Bacterial oxidative stress,the topography of the wing,and the surface chemistry of the wing are the crucial factors that induce bactericidal activity.The nanostructure along with the chemical composition of the wing can be mimicked for the fabrication of novel material with antibacterial properties.
文献关键词:
中图分类号:
作者姓名:
Sanjeev Kumar Paikra;Sumit Mukherjee;Nibedita Nayak;Janmejaya Bag;Monalisa Mishra
作者机构:
Neural Developmental Biology Laboratory,Department of Life Science,National Institute of Technology,769008,Rourkela,Sundergarh,Odisha,India
文献出处:
引用格式:
[1]Sanjeev Kumar Paikra;Sumit Mukherjee;Nibedita Nayak;Janmejaya Bag;Monalisa Mishra-.Impact of Hierarchical Architecture of Cryptotermes brevis Wing on the Modulation of Bacterial Adhesion)[J].仿生工程学报(英文版),2022(02):516-529
A类:
Cryptotermes,epicuticle
B类:
Impact,Hierarchical,Architecture,brevis,Wing,Modulation,Bacterial,Adhesion,wing,architecture,inspiration,fabricate,novel,materials,exquisite,properties,current,study,characterizes,biological,function,termite,topography,surface,was,studied,by,electron,microscopy,profilometer,physicochemical,property,analyzed,Fourier,transform,infrared,spectroscopy,ray,diffraction,energy,dispersive,gas,chromatography,mass,spectrometry,analysis,content,Water,Contact,Angle,measurement,confirmed,hydrophobicity,When,microorganisms,come,contact,they,adhere,due,cell,their,own,chemistry,reported,adhesion,behavior,two,species,bactericidal,activity,counting,viability,examination,under,confocal,laser,scanning,microscope,observed,oxidative,stress,crucial,factors,that,induce,nanostructure,along,composition,mimicked,fabrication,antibacterial
AB值:
0.530517
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