| Literature DB >> 33435005 |
Ping Mu1, Yanran Li1, Yanmei Zhang, Yun Yang, Ren Hu, Xulin Zhao, Anhua Huang, Ruofan Zhang, Xiangyang Liu2, Qiaoling Huang1, Changjian Lin.
Abstract
The dimension of TiO2 nanotubes (TNTs) ranges from several nanometers to hundreds of nanometers. This variety raises the difficulty of screening suitable nanotube dimension for biomedical applications. Herein, we report the use of a simple one-step bipolar anodization method for fabrication of TNT gradients with diameter range from 30 to 100 nm. The gradient TNTs were successfully applied for high-throughput screening of TNT size effect on cell responses, including cell adhesion, proliferation, and differentiation. Results reveal that no significant difference in adherent cell number could be found within the range of 30-87 nm in both the presence and absence of serum proteins. On the contrary, large nanotubes (with outer diameter >87 nm) profoundly reduce cell adhesion in both the presence and absence of serum proteins, indicating TNT size could affect cell adhesion directly without the adsorbed proteins. The size effect on cell behavior becomes prominent with time that cell proliferation and differentiation decrease with increasing nanotube size. This size effect can be comprehended by protein adsorption and the formation of focal adhesion. Another two sample applications of gradient TNTs demonstrate gradient TNTs are promising for high-throughput screening.Entities:
Keywords: bipolar electrochemistry; cell behavior; gradient TiO2 nanotubes; high-throughput screening
Year: 2018 PMID: 33435005 DOI: 10.1021/acsbiomaterials.8b00488
Source DB: PubMed Journal: ACS Biomater Sci Eng ISSN: 2373-9878