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PMID: 24612920 已发表 · ppublish 英语

The effect of cerium valence states at cerium oxide nanoparticle surfaces on cell proliferation.

Biomaterials ·第 35 卷 ·第 15 期 ·2014-11-12

Naganuma Tamaki, Traversa Enrico

摘要

Understanding and controlling cell proliferation on biomaterial surfaces is critical for scaffold/artificial-niche design in tissue engineering. The mechanism by which underlying integrin ligates with functionalized biomaterials to induce cell proliferation is still not completely understood. In this study, poly-l-lactide (PL) scaffold surfaces were functionalized using layers of cerium oxide nanoparticles (CNPs), which have recently attracted attention for use in therapeutic application due to their catalytic ability of Ce(4+) and Ce(3+) sites. To isolate the influence of Ce valance states of CNPs on cell proliferation, human mesenchymal stem cells (hMSCs) and osteoblast-like cells (MG63) were cultured on the PL/CNP surfaces with dominant Ce(4+) and Ce(3+) regions. Despite cell type (hMSCs and MG63 cells), different surface features of Ce(4+) and Ce(3+) regions clearly promoted and inhibited cell spreading, migration and adhesion behavior, resulting in rapid and slow cell proliferation, respectively. Cell proliferation results of various modified CNPs with different surface charge and hydrophobicity/hydrophilicity, indicate that Ce valence states closely correlated with the specific cell morphologies and cell-material interactions that trigger cell proliferation. This finding suggests that the cell-material interactions, which influence cell proliferation, may be controlled by introduction of metal elements with different valence states onto the biomaterial surface.

关键词
Adhesion Cell proliferation Nanoparticles Scaffold Surface modification
文献信息
期刊
Biomaterials
期刊简称
Biomaterials
发表日期
2014-11-12
收录日期
2014-03-18
更新日期
2014-03-18
语言
英语
国家/地区
Netherlands
NLM ID
8100316
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