首页 | 本学科首页   官方微博 | 高级检索  
检索        


The influence of laser frequency and groove distance on cell adhesion,cell viability,and antibacterial characteristics of Ti-6Al-4V dental implants treated by modern fiber engraving laser
Authors:Neshat Eghbali  Homam Naffakh-Moosavy  Sanam Sadeghi Mohammadi  Hossein Naderi-Manesh
Institution:1. Department of Materials Engineering, Tarbiat Modares University, Tehran P.O. Box 14115-143, Iran;2. Department of Nanobiotechnology/Biophysics, Faculty of Biological Science, Tarbiat Modares University, Tehran P.O. Box 14115-154, Iran
Abstract:ObjectiveMicro-nano scale surface modification of Ti-6Al-4V was investigated through the fascinated modern fiber engraving laser method. The process was performed at a high laser speed of 2000 mm/s, under different laser frequencies (20–160 kHz) and groove distances (0.5–50 μm).MethodsTopographic evaluations such as Atomic Force Microscopy (AFM) and Field Emission Scanning Electron Microscopy (FE-SEM) were used to identify the quality and regularity of patterns. The proliferation of human osteoblast-like osteosarcoma cells (MG63) was analyzed by MTT assay for up to 72 h. Also, the plate counting method was used to quantify the viability potential of the modified surface against Escherichia coli bacteria.ResultsThe cellular viability of the sample modified at the laser frequency of 20 kHz and grooving distance of 50 μm increased up to 35 and 10% compared to the non-treated and control samples, respectively. In the case of the surface modification at lower grooving distances range between 0.5–50 μm, the maximum laser frequency (160 kHz) applied leads to lower pulse’s energies and less bacterial adhesion. Otherwise, at groove distances more than 50 μm, the minimum laser frequency (20 kHz) applied reduces the laser pulse overlaps, increases the cell adhesion and antibacterial properties.SignificanceSurface modification by the fiber engraving laser process significantly enhances the cell adhesion on the surface. As a result of such roughness and cell adhesion enhancement, the surface toxicity feature diminished, and its antibacterial properties improved.
Keywords:Micro-nano surface modification  Modern fiber engraving laser  Titanium dental alloy  Cell viability  Cell adhesion
本文献已被 ScienceDirect 等数据库收录!
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号