钛
材料科学
细胞骨架
巨噬细胞
纳米结构
细胞因子
生物物理学
纳米技术
纳米尺度
氧化钛
分泌物
细胞生物学
免疫学
化学
生物
生物化学
细胞
冶金
体外
有机化学
作者
So-Young Lee,Jungil Choi,Sangwon Shin,Yeon-Min Im,Jong-Han Song,Sang Soo Kang,Tae-Hyun Nam,Thomas J. Webster,Sang‐Hyun Kim,Dongwoo Khang
标识
DOI:10.1016/j.actbio.2011.01.006
摘要
The immunotoxicity of implanted nanostructured titanium is a paramount issue for vascular, dental and orthopedic applications. However, it has been unclear whether implanted surface nanostructures can inhibit or aggrevate inflammatory responses. Herein, macrophage activation, as evidence of migration, on transparent flat and nanostructured titanium correlated with pro-inflammatory protein synthesis and cytokine release. Through the real-time monitoring of initial cytoskeleton variations, this study identified that macrophage movement was restricted on nanostructured titanium compared to flat titanium surfaces. Furthermore, nanostructured titanium elicited secretion of fewer pro-inflammatory enzyme molecules and cytokines, as well as reduced nitric oxide production. All results collectively indicated that initial macrophage activation can be mitigated by nanoscale surface topography alone, without modification of surface chemistry or stiffness.
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