GRF-CFUM, Physics Department, University of Minho , 4800-058 Guimarães, Portugal.
Center for Biomaterials and Tissue Engineering, CBIT, Universitat Politècnica de València , València, Spain.
ACS Appl Mater Interfaces. 2016 Feb 17;8(6):4199-207. doi: 10.1021/acsami.5b11922. Epub 2016 Feb 3.
In the sensors field, titanium based coatings are being used for the acquisition/application of electrical signals from/to piezoelectric materials. In this particular case, sensors are used to detect dynamic mechanical loads at early stages after intervention of problems associated with prostheses implantation. The aim of this work is to select an adequate electrode for sensor applications capable, in an initial stage to avoid bone cell adhesion, but at a long stage, permit osteointegration and osteoinduction. This work reports on the evaluation of osteoblast MC3T3-E1 cells behavior in terms of proliferation, adhesion and long-term differentiation of two different systems used as sensor electrodes: Ti1-xAgx and Ag-TiNx deposited by d.c. and pulsed magnetron sputtering at room temperature on poly(vinylidene fluoride) (PVDF). The results indicated an improved effect of Ag-TiNx electrodes compared with Ti1-xAgx and TiN, in terms of diminished cell adhesion and proliferation at an initial cell culture stage. Nevertheless, when cell culture time is longer, cells grown onto Ag-TiNx electrodes are capable to proliferate and also differentiate at proper rates, indicating the suitability of this coating for sensor application in prostheses devices. Thus, the Ag-TiNx system was considered the most promising electrode for tissue engineering applications in the design of sensors for prostheses to detect dynamic mechanical loads.
在传感器领域,钛基涂层正被用于获取/应用来自/至压电材料的电信号。在这种特殊情况下,传感器用于在与假体植入相关问题出现的早期阶段检测动态机械负载。本工作的目的是选择合适的传感器应用电极,这种电极在初始阶段应避免骨细胞黏附,但在长期阶段,应允许骨整合和骨诱导。本工作报道了两种不同系统作为传感器电极的成骨细胞 MC3T3-E1 细胞行为的评估:通过直流和室温脉冲磁控溅射在聚偏二氟乙烯(PVDF)上沉积的 Ti1-xAgx 和 Ag-TiNx。结果表明,与 Ti1-xAgx 和 TiN 相比,Ag-TiNx 电极在初始细胞培养阶段具有降低细胞黏附和增殖的效果。然而,当细胞培养时间更长时,在 Ag-TiNx 电极上生长的细胞能够以适当的速率增殖和分化,表明该涂层适用于假体设备中动态机械负载传感器的应用。因此,Ag-TiNx 系统被认为是用于设计检测动态机械负载的假体传感器的组织工程应用中最有前途的电极。