Literature DB >> 27280245

Estimation of Biocompatibility of Nano-Sized Ceramic Particles with Osteoblasts, Osteosarcomas and Hepatocytes by Static and Time-Lapse Observation.

Shigeaki Abe, Eri Seitoku, Nobuki Iwadera, Yusuke Hamba, Shuichi Yamagata, Tsukasa Akasaka, Teruo Kusaka, Satoshi Inoue, Yasutaka Yawaka, Junichiro Iida, Hidehiko Sano, Tetsu Yonezawa, Yasuhiro Yoshida.   

Abstract

We assessed the biocompatibility of nano-sized ceramic particles with several cells types. Though these particles have less than 100 nm in diameter, they act as submicron-sized particles in saline by aggregation that was estimated using laser diffraction particle size analysis (LDS). they act as submicro-sized particles in saline by aggregation based on laser diffraction particle size analysis (LDS). Several types of cells (osteoblasts, osteosarcoma and hepatocyte cells) were exposed to these particles and their cytocompatibility was estimated. Not only the cytotoxic assay but also their static and dynamic morphology under nanoparticles exposure were investigated. The intercellular uptake of particles was determined using a confocal fluorescence microscope. The particles used in this study did not inhibit cellular activity or growth even when their concentrations were high. Only copper oxide particles caused acute cytotoxicity depending on the particle size. The cytotoxicity assay, dynamic behavior of the nanoparticle-exposed cells and their examination under a confocal fluorescence microscope suggests that the irritative reaction was induced by contact between the cells and particles, whereas eluted copper ions are not dominant factor. These results indicate that nano-sized particles used in this study have excellent biocompatibility except copper oxide ones.

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Year:  2016        PMID: 27280245     DOI: 10.1166/jbn.2016.2190

Source DB:  PubMed          Journal:  J Biomed Nanotechnol        ISSN: 1550-7033            Impact factor:   4.099


  1 in total

Review 1.  Progress in Transparent Nano-Ceramics and Their Potential Applications.

Authors:  Wuyi Ming; Zhiwen Jiang; Guofu Luo; Yingjie Xu; Wenbin He; Zhuobin Xie; Dili Shen; Liwei Li
Journal:  Nanomaterials (Basel)       Date:  2022-04-27       Impact factor: 5.719

  1 in total

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