Celesti Consuelo, Gervasi Teresa, Cicero Nicola, Giofrè Salvatore Vincenzo, Espro Claudia, Piperopoulos Elpida, Gabriele Bartolo, Mancuso Raffaella, Lo Vecchio Giovanna, Iannazzo Daniela
Department of Engineering, University of Messina, Contrada Di Dio, I-98166 Messina, Italy.
Department of Biomedical and Dental Sciences and Morphological and Functional Images, University Hospital of Messina, Via Consolare Valeria, 1, I-98100 Messina, Italy.
Materials (Basel). 2022 May 3;15(9):3283. doi: 10.3390/ma15093283.
Pure titanium and titanium alloys are widely used in dentistry and orthopedics. However, despite their outstanding mechanical and biological properties, implant failure mainly due to post-operative infection still remains a significant concern. The possibility to develop inherent antibacterial medical devices was here investigated by covalently inserting bioactive ammonium salts onto the surface of titanium metal substrates. Titanium discs have been functionalized with quaternary ammonium salts (QASs) and with oleic acid (OA), affording the Ti-AEMAC Ti-GTMAC, Ti-AUTEAB, and Ti-OA samples, which were characterized by ATR-FTIR and SEM-EDX analyses and investigated for the roughness and hydrophilic behavior. The chemical modifications were shown to deeply affect the surface properties of the metal substrates and, as a consequence, their bio-interaction. The bacterial adhesion tests against the Gram-negative and Gram-positive , at 1.5 and 24 h of bacterial contact, showed good anti-adhesion activity for Ti-AUTEAB and Ti-OA samples, containing a long alkyl chain between the silicon atom and the ammonium functionality. In particular, the Ti-AUTEAB sample showed inhibition of bacteria adhesion against of about one log with respect to the other samples, after 1.5 h. The results of this study highlight the importance of chemical functionalization in addressing the antimicrobial activity of metal surfaces and could open new perspectives in the development of inherent antibacterial medical devices.
纯钛及钛合金在牙科和整形外科中得到广泛应用。然而,尽管它们具有出色的机械性能和生物学性能,但主要由术后感染导致的植入失败仍然是一个重大问题。本文通过将生物活性铵盐共价插入钛金属基底表面,研究了开发具有固有抗菌性能的医疗器械的可能性。用季铵盐(QASs)和油酸(OA)对钛盘进行功能化处理,得到Ti - AEMAC、Ti - GTMAC、Ti - AUTEAB和Ti - OA样品,通过衰减全反射傅里叶变换红外光谱(ATR - FTIR)和扫描电子显微镜 - 能谱分析(SEM - EDX)对其进行表征,并研究其粗糙度和亲水行为。结果表明,化学修饰对金属基底的表面性质产生了深远影响,进而影响了它们的生物相互作用。在细菌接触1.5小时和24小时时,针对革兰氏阴性菌和革兰氏阳性菌的细菌粘附试验表明,含有硅原子和铵官能团之间长烷基链的Ti - AUTEAB和Ti - OA样品具有良好的抗粘附活性。特别是,在1.5小时后,Ti - AUTEAB样品相对于其他样品对细菌粘附的抑制作用约为一个对数级。本研究结果突出了化学功能化在解决金属表面抗菌活性方面的重要性,并可能为开发具有固有抗菌性能的医疗器械开辟新的前景。