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Molybdenum Disulfide Surface Modification of Ultrafine-Grained Titanium for Enhanced Cellular Growth and Antibacterial Effect

机译:超细晶粒钛的二硫化钼表面改性可增强细胞生长和抗菌作用

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摘要

The commercially pure Ti (CP Ti) and equal-channel angular pressing (ECAP) processed Ti can contribute to the downsizing of medical devices with their superior mechanical properties and negligible toxicity. However, the ECAP-processed pure Ti has the risk of bacterial infection. Here, the coarse- and ultrafine-grained Ti substrates were surface-modified with molybdenum disulfide (MoS2) to improve the cell proliferation and growth with antibacterial effect for further dental applications. According to in vitro tests using the pre-osteoblast of MC3T3-E1 cell and a bacterial model of Escherichia coli (E. coli), MoS2 nanoflakes coated and ECAP-processed Ti substrates showed a significant increase in surface energy and singlet oxygen generation resulting in improved cell attachment and antibacterial effect. In addition, we confirmed the stability of the surface modified Ti substrates in a physiological solution and an artificial bone. Taken together, MoS2 modified and ECAP-processed Ti substrates might be successfully harnessed for various dental applications.
机译:商业上纯净的Ti(CP Ti)和等通道角压(ECAP)处理的Ti可以凭借其卓越的机械性能和可忽略的毒性来帮助缩小医疗器械的尺寸。但是,经ECAP处理的纯钛有被细菌感染的风险。此处,将粗晶粒和超细晶粒的Ti基材用二硫化钼(MoS2)进行了表面改性,以改善细胞的增殖和生长,并具有抗菌效果,可用于进一步的牙科应用。根据使用MC3T3-E1细胞的成骨前细胞和大肠杆菌(E. coli)细菌模型进行的体外测试,涂覆MoS2纳米薄片和ECAP处理的Ti基质显示表面能和单线态氧的产生显着增加,导致改善细胞附着和抗菌效果。另外,我们确认了在生理溶液和人造骨中表面改性的Ti基底的稳定性。综上所述,MoS2改性和ECAP处理的Ti基体可以成功地用于各种牙科应用。

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