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Regulation of cell locomotion by nanosecond-laser-induced hydroxyapatite patterning

机译:纳秒激光诱导的羟基磷灰石图案调节细胞运动

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摘要

Hydroxyapatite, an essential mineral in human bones composed mainly of calcium and phosphorus, is widely used to coat bone graft and implant surfaces for enhanced biocompatibility and bone formation. For a strong implant–bone bond, the bone-forming cells must not only adhere to the implant surface but also move to the surface requiring bone formation. However, strong adhesion tends to inhibit cell migration on the surface of hydroxyapatite. Herein, a cell migration highway pattern that can promote cell migration was prepared using a nanosecond laser on hydroxyapatite coating. The developed surface promoted bone-forming cell movement compared with the unpatterned hydroxyapatite surface, and the cell adhesion and movement speed could be controlled by adjusting the pattern width. Live-cell microscopy, cell tracking, and serum protein analysis revealed the fundamental principle of this phenomenon. These findings are applicable to hydroxyapatite-coated biomaterials and can be implemented easily by laser patterning without complicated processes. The cell migration highway can promote and control cell movement while maintaining the existing advantages of hydroxyapatite coatings. Furthermore, it can be applied to the surface treatment of not only implant materials directly bonded to bone but also various implanted biomaterials implanted that require cell movement control.
机译:羟基磷灰石,主要由钙和磷组成的人体骨骼中的必需矿物,广泛用于涂覆骨移植物和植入表面以增强生物相容性和骨形成。对于强大的植入骨键,骨形成的细胞不仅必须粘附到植入表面上,而且还可以移动到需要骨形成的表面。然而,强粘合趋于抑制羟基磷灰石表面的细胞迁移。这里,使用纳米磷灰石涂层上的纳秒激光制备能够促进细胞迁移的细胞迁移公路图案。与未绘图的羟基磷灰石表面相比,显影表面促进了骨形成的细胞运动,并且可以通过调节图案宽度来控制电池粘附和移动速度。活细胞显微镜,细胞跟踪和血清蛋白质分析显示了这种现象的基本原理。这些发现适用于羟基磷灰石涂覆的生物材料,可以通过激光图案化而可以轻松实现,而无复杂的方法。细胞迁移高速公路可以促进和控制细胞运动,同时保持羟基磷灰石涂层的现有优势。此外,它可以应用于不仅植入物体直接粘合到骨的植入物的表面处理,还可以植入需要细胞运动控制的各种植入的生物材料。

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