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Method and apparatus to coat a metal implant with electrospun nanofiber matrix

机译:用电纺纳米纤维基质涂覆金属植入物的方法和设备

摘要

The present invention implements a set of grooves/ridges created on Ti at the circumferential direction to increase surface area of implant in contact with bone. These grooves/ridges protect nanofiber matrix (NFM) made with Polycaprolactone (PCL) electrospun nanofiber (ENF) and collagen at the groove from physiological loading. Controlled fabrication of a ridge made with titanium nitride (TiN) around the circumference of Ti is provided using a plasma nitride deposition technique. PCL ENF may be deposited along the sub-micrometer grooves using the electrospin setup disclosed. The method provides for fabrication of microgroove on Ti using machining or TiN deposition and filling the microgrooves with the NFM. This method has proven through experimentation to be successful in increasing in vivo mechanical stability and promoting osseointegration on Ti implants. The immobilization of MgO NP and FN with the PCL-CG NFM on microgrooved Ti as provided in the invention optimizes biological performances of Ti.
机译:本发明实现了在圆周方向上在Ti上形成的一组凹槽/脊,以增加与骨骼接触的植入物的表面积。这些凹槽/脊可保护由聚己内酯(PCL)电纺纳米纤维(ENF)和胶原蛋白制成的纳米纤维基质(NFM)免受生理负荷。使用等离子体氮化物沉积技术,可控制地制造由Ti周围的氮化钛(TiN)制成的脊。可以使用所公开的电纺丝装置沿亚微米凹槽沉积PCL ENF。该方法提供了使用机加工或TiN沉积在Ti上制造微沟槽并用NFM填充微沟槽的方法。通过实验证明,该方法可成功提高体内机械稳定性并促进Ti植入物的骨整合。如本发明所提供的,用PCL-CG NFM将MgO NP和FN固定在微槽的Ti上,优化了Ti的生物学性能。

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