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添加TiO对磁控溅射沉积的BCP-TiO复合薄膜附着力及生物学行为的影响。

Effect of TiO addition on adhesion and biological behavior of BCP-TiO composite films deposited by magnetron sputtering.

作者信息

Behera R R, Das A, Hasan A, Pamu D, Pandey L M, Sankar M R

机构信息

Department of Mechanical Engineering, Indian Institute of Technology Guwahati, Assam 781039, India; School of Mechanical Engineering, Kalinga Institute of Industrial Technology, Bhubaneswar, Odisha 751024, India.

Department of Physics, Indian Institute of Technology Guwahati, Assam 781039, India.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Sep;114:111033. doi: 10.1016/j.msec.2020.111033. Epub 2020 Apr 30.

Abstract

The present investigation focuses on the deposition of biphasic calcium phosphate (BCP) and titania (TiO) composite films on Ti-6Al-4V substrates using radio frequency (RF) magnetron sputtering. Three different compositions such as 100% BCP, 25% TiO-75% BCP and 50% TiO-50% BCP films were fabricated, and the physical, mechanical and biological behaviors of the films were analyzed. Post deposition, the films were annealed at 700 °C for 2 h to induce the crystallinity and to study its effect on different properties. The wettability was found to be 95°(±3°) for 100% BCP, 73°(±2°) for 25% TiO-75% BCP and 35°(±1°) for 50% TiO-50% BCP films, indicating improvement in wettability with an increase of TiO weight percent in the composite films. The value of critical load (L) for 100 BCP film improved from 8.7 N to 14.8 N (25 TiO-BCP) and >19 N (50 TiO-BCP film), indicating improvement in bonding strength with TiO addition. The fetal bovine serum (FBS) adsorption decreased from 7.11 ± 0.25 to 4.42 ± 0.17 μg/cm with TiO weight percent from 0 to 50%. Cell adhesion and proliferation significantly improved in 100% BCP, 25% TiO-75% BCP and 50% TiO-50% BCP films as compared to uncoated Ti-6Al-4V. The maximum cell proliferation was found on the surface of 50% TiO-50% BCP film (210.1 ± 6.5%) after 6 days of incubation. However, after annealing all the films exhibited less cell adhesion and cytocompatibility presumably due to change in composition. Globular apatite structure was observed on all modified surfaces after 7 days immersion in simulated body fluid (SBF); however, the growth rate was higher for 50 TiO-BCP films. All these results revealed that the addition of TiO in BCP film (without annealing) is advantageous for improving the bonding strength as well as the bioactivity of implants, which can be used for long-term dental and orthopedic applications.

摘要

本研究聚焦于使用射频(RF)磁控溅射在Ti-6Al-4V基体上沉积双相磷酸钙(BCP)和二氧化钛(TiO₂)复合薄膜。制备了三种不同成分的薄膜,即100% BCP、25% TiO₂-75% BCP和50% TiO₂-50% BCP薄膜,并对薄膜的物理、力学和生物学行为进行了分析。沉积后,将薄膜在700℃退火2小时以诱导结晶,并研究其对不同性能的影响。发现100% BCP薄膜的润湿性为95°(±3°),25% TiO₂-75% BCP薄膜为73°(±2°),50% TiO₂-50% BCP薄膜为35°(±1°),这表明随着复合薄膜中TiO₂重量百分比的增加,润湿性得到改善。100% BCP薄膜的临界载荷(L)值从8.7 N提高到14.8 N(25% TiO₂-BCP)和>19 N(50% TiO₂-BCP薄膜),表明添加TiO₂后结合强度得到改善。随着TiO₂重量百分比从0增加到50%,胎牛血清(FBS)吸附量从7.11±0.25μg/cm²降至4.42±0.17μg/cm²。与未涂层的Ti-6Al-4V相比,100% BCP、25% TiO₂-75% BCP和50% TiO₂-50% BCP薄膜中的细胞粘附和增殖显著改善。孵育6天后,在50% TiO₂-50% BCP薄膜表面发现最大细胞增殖(210.1±6.5%)。然而,退火后所有薄膜的细胞粘附和细胞相容性均降低,这可能是由于成分变化所致。在模拟体液(SBF)中浸泡7天后,在所有改性表面均观察到球状磷灰石结构;然而,5 TiO₂-BCP薄膜的生长速率更高。所有这些结果表明,在BCP薄膜中添加TiO₂(未退火)有利于提高植入物的结合强度和生物活性,可用于长期牙科和骨科应用。

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