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Relevant insight of surface characterization techniques to study covalent grafting of a biopolymer to titanium implant and its acidic resistance

机译:有关研究生物聚合物共价接枝钛植入物及其耐酸性的表面表征技术的相关见解

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Pen-implant bacterial infections are the main cause of complications in dentistry. Our group has previously proposed the attachment of chitosan on titanium implants via a covalent bond to improve its antibacterial properties while maintaining its biocompatibility. A better knowledge of the coating preparation process allows a better understanding of the bioactive coating in biological conditions. In this work, several relevant characterization techniques were used to assess an implant device during its production phase and its resistance in natural media at different pH. The titanium surface was functionalized with 3-aminopropyltriethoxysilane (APTES) followed by grafting of an organic coupling agent; succinic anhydride, able to form two covalent links, with the substrate through a Ti-O-Si bond and the biopolymer through a peptide bond. Each step of the coating synthesis as well as the presence confirmation of the biopolymer on titanium after saliva immersion was followed by FTIR-ATR, SEM, EDS, 3D profilometry, XPS and ToF-SIMS analyses. Results allowed to highlight the efficiency of each step of the process, and to propose a mechanism occurring during the chitosan coating degradation in saliva media at pH 5 and at pH 3. (C) 2014 Elsevier B.V. All rights reserved.
机译:笔植入物细菌感染是牙科并发症的主要原因。我们的研究小组以前曾提出通过共价键将壳聚糖附着在钛植入物上,以改善其抗菌性能,同时保持其生物相容性。更好地了解涂层制备过程可以更好地了解生物条件下的生物活性涂层。在这项工作中,使用了几种相关的表征技术来评估植入设备在其生产阶段以及在不同pH值的自然介质中的抵抗力。用3-氨基丙基三乙氧基硅烷(APTES)对钛表面进行功能化,然后接枝有机偶联剂;能够形成两个共价键的琥珀酸酐,通过Ti-O-Si键与底物形成生物共价键,通过肽键与生物聚合物形成共价键。唾液浸没后,在涂层合成的每个步骤以及钛上生物聚合物的存在确认之后,进行FTIR-ATR,SEM,EDS,3D轮廓分析,XPS和ToF-SIMS分析。结果可以突出显示该过程每个步骤的效率,并提出在pH 5和pH 3的唾液介质中脱乙酰壳多糖涂层降解过程中发生的机理。(C)2014 Elsevier B.V.保留所有权利。

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