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通过基质辅助脉冲激光蒸发沉积法制备用于钛植入物功能化的生物活性玻璃和蜂毒肽薄膜。

Bioactive Glass and Melittin Thin Films Deposited by MAPLE for Titanium Implant Functionalization.

作者信息

Dinu Mihaela, Bita Bogdan, Parau Anca Constantina, Ristoscu Carmen, Negut Irina

机构信息

National Institute of Research and Development for Optoelectronics-INOE2000, 409 Atomistilor St., 077125 Magurele, Romania.

Faculty of Physics, University of Bucharest, 405 Atomistilor, 077125 Magurele, Romania.

出版信息

Materials (Basel). 2025 May 21;18(10):2410. doi: 10.3390/ma18102410.

Abstract

The development of bioactive coatings for metallic implants is essential to enhance osseointegration and improve implant longevity. In this study, composite thin films based on bioactive glass and melittin were synthesized using the matrix-assisted pulsed laser evaporation technique and deposited onto titanium substrates. The coatings were characterized using physicochemical analysis methods, including scanning electron microscopy, atomic force microscopy, contact angle measurements, Fourier transform infrared spectroscopy, energy-dispersive X-ray spectroscopy, and electrochemical impedance spectroscopy. Simulated body fluid immersion tests were also conducted to assess bioactivity over time. Scanning electron microscopy and atomic force microscopy revealed dense, irregular surface textures with nanoscale features and an average roughness of 120 nm, favorable for cell adhesion. Contact angle measurements showed a significant shift from hydrophobic (95° for bare titanium) to moderately hydrophilic (~62° for the bioglass and melittin coating) surfaces, indicating improved biocompatibility. Electrochemical impedance spectroscopy demonstrated enhanced corrosion resistance in simulated body fluid, with the coating exhibiting a ~45% decrease in impedance magnitude after 12 h of immersion, compared to only 4% for bare titanium. Fourier transform infrared spectroscopy and energy-dispersive X-ray spectroscopy analyses confirmed the progressive formation of a carbonated apatite layer after 7 days of simulated body fluid exposure, suggesting high bioactivity and osteoconductive potential. The combined effects of bioactive glass and melittin in the thin film structure offer promising applications in orthopedic and dental implants, enhancing both biological performance and structural integrity.

摘要

开发用于金属植入物的生物活性涂层对于增强骨整合和提高植入物寿命至关重要。在本研究中,采用基质辅助脉冲激光蒸发技术合成了基于生物活性玻璃和蜂毒肽的复合薄膜,并将其沉积在钛基底上。使用物理化学分析方法对涂层进行了表征,包括扫描电子显微镜、原子力显微镜、接触角测量、傅里叶变换红外光谱、能量色散X射线光谱和电化学阻抗谱。还进行了模拟体液浸泡试验,以评估随时间的生物活性。扫描电子显微镜和原子力显微镜显示出具有纳米级特征的致密、不规则表面纹理,平均粗糙度约为120 nm,有利于细胞粘附。接触角测量表明,表面从疏水性(裸钛约为95°)显著转变为中等亲水性(生物玻璃和蜂毒肽涂层约为62°),表明生物相容性得到改善。电化学阻抗谱表明,在模拟体液中耐腐蚀性增强,浸泡12 h后,涂层的阻抗幅值降低约45%,而裸钛仅降低4%。傅里叶变换红外光谱和能量色散X射线光谱分析证实,在模拟体液暴露7天后,逐渐形成了碳酸磷灰石层,表明具有高生物活性和骨传导潜力。薄膜结构中生物活性玻璃和蜂毒肽的综合作用在骨科和牙科植入物中具有广阔的应用前景,可同时提高生物学性能和结构完整性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/824f/12113184/44e6a493cfc5/materials-18-02410-g001.jpg

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