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Modification of titanium surface with collagen and doxycycline as a new approach in dental implants

机译:胶原蛋白和强力霉素对钛表面的改性作为牙种植体的新方法

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摘要

In this work, we investigate for the first time several issues involved in bio-adhesion process for a new type of chemically modified titanium surfaces (in their initial form and after collagen deposition), in order to assess their potential in dental implant surface modification. For this purpose, we studied the following: collagen adhesion, cytotoxicity, osteoblast cytomorphology, cell adhesion and proliferation, doxycycline embedding and modifications in the collagen film deposed on the metal surfaces, drug release from the collagen films. The improvement of adhesion between collagen film and titanium substrate, when hydroxyl and amino functional groups are assisting the surfaces was presented, all materials showing no cytotoxic effects as revealed by lactate dehydrogenase-based assay. The drug release from titanium-coll-doxy systems offers a dual mechanism of the delivery profile (burst release followed by moderate discharge of the antibiotic), with perspectives in soft tissue recovery postoperative stage.
机译:在这项工作中,我们首次调查了新型化学修饰的钛表面(初始形式和胶原沉积后)在生物粘附过程中涉及的几个问题,以评估其在牙种植体表面修饰中的潜力。为此,我们研究了以下内容:胶原蛋白的粘附,细胞毒性,成骨细胞的细胞形态,细胞的粘附和增殖,强力霉素的嵌入和在金属表面上沉积的胶原蛋白膜的修饰,药物从胶原蛋白膜的释放。当羟基和氨基官能团辅助表面时,胶原膜与钛基底之间的粘附性得以改善,所有材料均未显示出细胞毒性作用,这是基于乳酸脱氢酶的测定所揭示的。从钛-可乐-脱氧系统中释放的药物提供了双重的传输模式(爆发释放,随后适度释放抗生素),具有术后软组织恢复的前景。

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