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Establishing Antibacterial Multilayer Films on the Surface of Direct Metal Laser Sintered Titanium Primed with Phase-Transited Lysozyme

机译:在相变溶菌酶引发的直接金属激光烧结钛表面上建立抗菌多层膜

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摘要

Direct metal laser sintering is a technology that allows the fabrication of titanium (Ti) implants with a functional gradation of porosity and surface roughness according to three-dimensional (3D) computer data. The surface roughness of direct metal laser sintered titanium (DMLS-Ti) implants may provide abundant binding sites for bacteria. Bacterial colonization and subsequent biofilm formation can cause unsatisfactory cell adhesion and implant-related infections. To prevent such infections, a novel phase-transited lysozyme (PTL) was utilized as an initial functional layer to simply and effectively prime DMLS-Ti surfaces for subsequent coating with antibacterial multilayers. The purpose of the present study was to establish a surface with dual biological functionality. The minocycline-loaded polyelectrolyte multilayers of hyaluronic acid (HA) and chitosan (CS) formed via a layer-by-layer (LbL) self-assembly technique on PTL-functionalized DMLS-Ti were designed to inhibit pathogenic microbial infections while allowing the DMLS-Ti itself and the modified coatings to retain acceptable biocompatibility. The experimental results indicate that the DMLS-Ti and the hydrogel treated surfaces can inhibit early bacterial adhesion while completely preserving osteoblast functions. This design is expected to gain considerable interest in the medical field and to have good potential for applications in multifunctional DMLS-Ti implants.
机译:直接金属激光烧结是一种技术,该技术可根据三维(3D)计算机数据,制造具有孔隙度和表面粗糙度功能等级的钛(Ti)植入物。直接金属激光烧结钛(DMLS-Ti)植入物的表面粗糙度可能会为细菌提供丰富的结合位点。细菌定植和随后的生物膜形成会引起不令人满意的细胞粘附和植入物相关感染。为了防止此类感染,将新型的相变溶菌酶(PTL)用作初始功能层,以简单,有效地打底DMLS-Ti表面,以用于随后的抗菌多层涂层。本研究的目的是建立具有双重生物学功能的表面。通过在PTL功能化的DMLS-Ti上逐层(LbL)自组装技术形成的透明质酸(HA)和壳聚糖(CS)的氨基环素负载聚电解质多层膜被设计为在允许DMLS的同时抑制病原性微生物感染-Ti本身和改性涂层可保持可接受的生物相容性。实验结果表明,DMLS-Ti和水凝胶处理过的表面可以抑制早期细菌粘附,同时完全保留成骨细胞的功能。预期该设计将在医学领域引起广泛兴趣,并在多功能DMLS-Ti植入物中具有良好的应用潜力。

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