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Quartz Crystal Microbalance Analysis of Antimicrobial Protein Adsorption onto Zirconia
Masatsugu Hirota1, Takatsugu Yamamoto1,2
1Department of Education for Dental Medicine, Tsurumi University School of Dental Medicine, 2-1-3, Tsurumi, Tsurumi-ku, Yokohama 230-8501, Japan.
Abstract:
Protein adsorption on dental zirconia (ZrO2) surfaces plays a crucial role in plaque formation, tissue healing, and bone osseointegration. This study investigated and compared the adsorption behavior of three salivary antimicrobial proteins-peroxidase, lactoferrin, and lysozyme-on a ZrO2 sensor and an Au sensor using a quartz crystal microbalance (QCM) operating at 27 MHz. Protein adsorption was determined from frequency decreases, and the apparent reaction rate constant (kobs) was calculated by fitting frequency-time curves to a kinetic model. The amount of lactoferrin adsorbed on the ZrO2 sensor was significantly higher than that of peroxidase and lysozyme (p < 0.05). Significantly smaller amounts of peroxidase and lysozyme were adsorbed onto the ZrO2 sensor than the Au sensor (p < 0.05). The kobs for lysozyme on the Au sensor was significantly higher than those for lactoferrin on sensors and for peroxidase on the Au sensor (p < 0.05). Differences in salivary antimicrobial protein adsorption between Au and ZrO2 surfaces were influenced, in part, by electrostatic interactions between the proteins and the material surface.
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