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A peptide-based biological coating for enhanced corrosion resistance of titanium alloy biomaterials in chloride-containing fluids

机译:一种基于肽的生物涂层,用于含氯化物的液体中钛合金生物材料的增强耐腐蚀性

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摘要

Titanium alloys are common materials in the manufacturing of dental and orthopedic implants. Although these materials exhibit excellent biocompatibility, corrosion in response to biological fluids can impact prosthesis performance and longevity. In this work, a PEGylated metal binding peptide (D-K122-4-PEG), derived from bacteria Pseudomonas aeruginosa, was applied on a titanium (Ti) alloy, and the corrosion resistance of the coated alloy specimen was investigated in simulated chloride-containing physiological fluids by electrochemical impedance spectroscopy and micro-electrochemical measurements, surface characterization, and biocompatibility testing. Compared to uncoated specimen, the D-K122-4-PEG-coated Ti alloy demonstrates decreased corrosion current density without affecting the natural passivity. Morphological analysis using atomic force microscopy and scanning electron microscopy confirms a reduction in surface roughness of the coated specimens in the fluids. The D-K122-4-PEG does not affect the binding of HEK-293T cells to the surface of unpolished Ti alloy, nor does it increase the leukocyte activation properties of the metal. D-K122-4-PEG represents a promising coating to enhance the corrosion resistance of Ti alloys in physiological fluids, while maintaining an excellent biocompatibility.
机译:钛合金是牙科和整形外科植入物制造的常用材料。尽管这些材料表现出优异的生物相容性,但响应生物流体的腐蚀可能会影响假体性能和寿命。在这项工作中,聚乙二醇化的金属结合肽(d-K122-4-PEG),来自细菌绿脓杆菌来源,涂布在钛(Ti)合金,以及涂覆的合金样品的耐腐蚀性在模拟氯化物进行了研究通过电化学阻抗光谱和微电化学测量,表面表征和生物相容性测试的含生理流体。与未涂覆的样本相比,D-K122-4-PEG涂覆的Ti合金表明腐蚀电流密度降低而不影响自然主义。使用原子力显微镜和扫描电子显微镜的形态学分析证实了流体中涂覆的标本的表面粗糙度的降低。 D-K122-4-PEG不会影响HEK-293T细胞的结合,未抛光Ti合金的表面,也没有增加金属的白细胞活化性能。 D-K122-4-PEG代表有希望的涂层,以增强Ti合金在生理流体中的耐腐蚀性,同时保持优异的生物相容性。

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