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Drug-eluting Ti wires with titania nanotube arrays for bone fixation and reduced bone infection

机译:具有二氧化钛纳米管阵列的药物洗脱钛丝用于骨固定和减少骨感染

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摘要

Current bone fixation technology which uses stainless steel wires known as Kirschner wires for fracture fixing often causes infection and reduced skeletal load resulting in implant failure. Creating new wires with drug-eluting properties to locally deliver drugs is an appealing approach to address some of these problems. This study presents the use of titanium [Ti] wires with titania nanotube [TNT] arrays formed with a drug delivery capability to design alternative bone fixation tools for orthopaedic applications. A titania layer with an array of nanotube structures was synthesised on the surface of a Ti wire by electrochemical anodisation and loaded with antibiotic (gentamicin) used as a model of bone anti-bacterial drug. Successful fabrication of TNT structures with pore diameters of approximately 170 nm and length of 70 μm is demonstrated for the first time in the form of wires. The drug release characteristics of TNT-Ti wires were evaluated, showing a two-phase release, with a burst release (37%) and a slow release with zero-order kinetics over 11 days. These results confirmed our system's ability to be applied as a drug-eluting tool for orthopaedic applications. The established biocompatibility of TNT structures, closer modulus of elasticity to natural bones and possible inclusion of desired drugs, proteins or growth factors make this system a promising alternative to replace conventional bone implants to prevent bone infection and to be used for targeted treatment of bone cancer, osteomyelitis and other orthopaedic diseases.
机译:当前的骨固定技术使用称为Kirschner线的不锈钢线进行骨折固定,通常会导致感染并降低骨骼负荷,从而导致植入物失效。创建具有药物洗脱特性的新导线以局部递送药物是解决其中一些问题的有吸引力的方法。这项研究提出了将钛[Ti]线与具有药物输送能力的二氧化钛纳米管[TNT]阵列​​结合使用,以设计用于骨科应用的替代性骨固定工具。通过电化学阳极氧化在钛丝的表面上合成具有纳米管结构阵列的二氧化钛层,并装载用作骨抗菌药物模型的抗生素(庆大霉素)。首次以线材形式成功证明了孔径大约为170 nm,长度为70μm的TNT结构的成功制造。评估了TNT-Ti线材的药物释放特性,显示了两相释放,爆发释放(37%)和缓慢释放以及11天零级动力学。这些结果证实了我们系统的能力,可以用作骨科应用的药物洗脱工具。 TNT结构已建立的生物相容性,更接近天然骨的弹性模量以及可能包含所需的药物,蛋白质或生长因子,使得该系统成为替代常规骨植入物以预防骨感染并有望用于骨癌靶向治疗的有希望的替代方案,骨髓炎和其他骨科疾病。

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