Effect of pH and Addition of Salt on the Adsorption Behavior of Lysozyme on Gold, Silica, and Titania Surfaces Observed by Quartz Crystal Microbalance with Dissipation Monitoring
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概要
- 論文の詳細を見る
The adsorption behaviors of lysozyme on dentally related Au, SiO_2, and TiO_2 surfaces were investigated by a quartz crystal microbalance with dissipation monitoring (QCM-D) method. Frequency shifts indicated that while lysozyme (pI 11) was fairly adsorbed on the SiO_2 (pI 1.9) surface at both pH 3 and 7, it was adsorbed on TiO_2 (pI 6.3) surface only at pH 7. However, adsorption was disturbed by 50 mM NaCl. These results strongly suggested an electrostatic nature of the adsorption behavior. Though a large-scale adsorption of the lysozyme on Au sensor was pH-insensitive, softness of the adlayer as seen from the dissipation profile was pH-dependent, indicating an interaction of another type. With all the surfaces, the small dissipation change indicated a stiff lysozyme adlayer. Results of this study revealed that the controlled electrostatic interaction between the material surface and lysozyme might be a useful method for imparting antibacterial property to the dental materials.
- 日本歯科理工学会の論文
著者
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TAIRA Masayuki
Department of Dental Materials and Technology, Iwate Medical University School of Dentistry
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成島 尚之
Department Of Materials Processing Tohoku University
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Sasaki Kaori
Department of Integrated Medicine and Informatics, Ehime University Graduate School of Medicine
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Sasaki Kaori
Division Of Dental Bio-engineering Department Of Pathogenesis And Control Of Oral Diseases Iwate Med
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NEZU Takashi
Department of Prosthetic Dentistry I, Faculty of Dentistry, Kyushu University
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Taira Masayuki
Division Of Dental Bio-engineering Department Of Pathogenesis And Control Of Oral Diseases Iwate Med
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Saitoh Setsuo
Division Of Dental Bio-engineering Department Of Pathogenesis And Control Of Oral Diseases Iwate Med
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SAITOH Setsuo
Department of Dental Materials Science and Technology, Iwate Medical University School of Dentistry
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ARAKI Yoshima
Department of Dental Materials Science and Technology, Iwate Medical University School of Dentistry
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MASUYAMA Tomoyuki
Department of Operative Dentistry and Endodontics, Iwate Medical University School of Dentistry
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Sasaki Kaori
Department Of Applied Chemistry Faculty Of Science And Engineering Kinki University
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Nezu Takashi
Department Of Dental Materials Science And Technology Iwate Medical University School Of Dentistry
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Araki Y
Department Of Dental Materials Science And Technology Iwate Medical University School Of Dentistry
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Araki Yoshima
Department Of Dental Materials Science And Technology Iwate Medical University School Of Dentistry
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Masuyama Tomoyuki
Department Of Operative Dentistry And Endodontics Iwate Medical University School Of Dentistry
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Nezu Takashi
Department Of Dental Biomaterials And Technology Iwate Medical University School Of Dentistry
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Nezu Takashi
Department of Chemistry, Faculty of Science, Nagoya University
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TAIRA Masayuki
Department of Biomedical Engineering, Iwate Medical University,
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