Periodontology Department, Faculty of Dentistry, Hacettepe University, Ankara, Turkey.
Department of Nanotechnology and Nanomedicine, Institute of Science and Technology, Hacettepe University, Ankara, Turkey.
J Periodontal Res. 2020 Oct;55(5):694-704. doi: 10.1111/jre.12756. Epub 2020 Aug 9.
To test the surface properties and in vitro effects of a new sequential release system on MC3T3-E1 cells for improved osseointegration.
BMP6-loaded anodized titanium coated with PDGF containing silk fibroin (SF) may improve osseointegration.
Titanium surfaces were electrochemically anodized, and SF layer was covered via electrospinning. Five experimental groups (unanodized Ti (Ti), anodized Ti (AnTi), anodized + BMP6-loaded Ti (AnTi-BMP6), anodized + BMP6 loaded + silk fibroin-coated Ti (AnTi-BMP6-SF), and anodized + BMP6-loaded + silk fibroin with PDGF-coated Ti (AnTi-BMP6-PDGF-SF)) were tested. After SEM characterization, contact angle analysis, and FTIR analysis, the amount of released PDGF and BMP6 was detected using ELISA. Cell proliferation (XTT), mineralization, and gene expression (RUNX2 and ALPL) were also evaluated.
After successful anodization and loading of PDGF and BMP6, contact angle measurements showed hydrophobicity for TiO and hydrophilicity for protein-adsorbed surfaces. In FTIR, protein-containing surfaces exhibited amide-I, amide-II, and amide-III bands at 1600 cm -1700 cm , 1520 cm -1540 cm , and 1220 cm -1300 cm spectrum levels with a significant peak in BMP6- and/or SF-loaded groups at 1100 cm . PDGF release and BMP6 release were delayed, and relatively slower release was detected in SF-coated surfaces. Higher MC3T3-E1 proliferation and mineralization and lower gene expression of RUNX2 and ALPL were detected in AnTi-BMP6-PDGF-SF toward day 28.
The new system revealed a high potential for an improved early osseointegration period by means of a better factor release curve and contribution to the osteoblastic cell proliferation, mineralization, and associated gene expression.
测试新序贯释放系统对 MC3T3-E1 细胞的表面性能和体外影响,以改善骨整合。
负载 BMP6 的阳极氧化钛涂层含 PDGF 的丝素蛋白(SF)可能改善骨整合。
钛表面进行电化学阳极氧化,通过静电纺丝覆盖 SF 层。将 5 个实验组(未阳极氧化 Ti(Ti)、阳极氧化 Ti(AnTi)、负载 BMP6 的阳极氧化 Ti(AnTi-BMP6)、负载 BMP6 加 SF 涂层的阳极氧化 Ti(AnTi-BMP6-SF)和负载 BMP6 加 PDGF-SF 涂层的阳极氧化 Ti(AnTi-BMP6-PDGF-SF))进行测试。在 SEM 表征、接触角分析和 FTIR 分析后,使用 ELISA 检测 PDGF 和 BMP6 的释放量。还评估了细胞增殖(XTT)、矿化和基因表达(RUNX2 和 ALPL)。
成功进行阳极氧化和 PDGF 和 BMP6 负载后,接触角测量显示 TiO 为疏水性,蛋白质吸附表面为亲水性。在 FTIR 中,含有蛋白质的表面在 1600-1700 cm-1、1520-1540 cm-1 和 1220-1300 cm-1 光谱水平显示酰胺-I、酰胺-II 和酰胺-III 带,在 BMP6 和/或 SF 负载组中具有明显的峰值在 1100 cm-1。PDGF 释放和 BMP6 释放延迟,SF 涂层表面释放较慢。在第 28 天,AnTi-BMP6-PDGF-SF 组中观察到更高的 MC3T3-E1 增殖和矿化,以及 RUNX2 和 ALPL 基因表达降低。
新系统通过更好的因子释放曲线和对成骨细胞增殖、矿化和相关基因表达的贡献,显示出在改善早期骨整合期方面的巨大潜力。