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The effects of TiO 2 nanotube arrays with different diameters on macrophage/endothelial cell response and ex vivo hemocompatibility

作者:Long Bai, Ying Yang, Jayanti Mendhi, Zeyu Du, Rui Hao, Ruiqiang Hang, Xiaohong Yao, Nan Huang, Bin Tang, Yin Xiao · 发表于:Journal of Materials Chemistry B · 年份:2018 · DOI:10.1039/c8tb01675e · 被引用次数:33 · 研究领域:Nanoparticles: synthesis and applications、Anesthesia and Neurotoxicity Research、Neuroinflammation and Neurodegeneration Mechanisms

nanotube arrays (TNAs) with different diameters were fabricated by anodization. The diameter could be precisely adjusted from 15 nm (Nano-15) to 120 nm (Nano-120). The effect of distinct nanodimensions on the behavior of ECs/MΦs and their crosstalk was investigated. The results indicated that Nano-15 not only promoted the initial vitality of ECs and function-related gene expression but also enhanced the activation and spread of MΦs. In addition, Nano-15 downregulated the gene expression of inflammatory cytokines and pro-inflammatory M1 markers, while upregulating the gene expression of pro-healing M2 markers, autophagy markers, and growth factors of MΦs. A further investigation conducted using a specialized specimen-conditioned medium (SCM) from MΦs/ECs disclosed that the SCM derived from Nano-15 was able to manipulate a favorable microenvironment to facilitate MΦ-EC crosstalk via downregulation of inflammation-related gene expression and upregulation of function-related gene expression in ECs. Moreover, we further investigated the hemocompatibility of specimens in an ex vivo animal model. The results indicated that both pure Ti and Nano-15 possess satisfactory hemocompatibility, as manifested by the few thrombi that formed around the specimens. Additionally, in comparison with Nano-120, Nano-15 can significantly alleviate platelet activation and manipulate a loose structure of fibrin fibers in a dynamic situation. This study suggests that the application of Nano-15 as a surf...