TY - JOUR
T1 - Preparation and in vitro study of ZnO/Pegmema core-shell nanoparticles
AU - Chung, Ren Jei
AU - Chiu, Ding Jiun
PY - 2013/10
Y1 - 2013/10
N2 - The purpose of this study was using sol-gel method to prepare zinc oxidenO) with specific nanostructures, including the ZnO/PEGMEMA composites with core-shell structure. Pure ZnO nanoparticlesnO NPs), ZnO-PEG NPs, and ZnO/SiO2-PEG NPs were prepared. Their chemical composition, particle size distribution, and optical properties were investigated. Under UV light excitation, the prepared ZnO NPs, ZnO-PEG NPs, and ZnO/SiO2-PEG NPs showed light emission in the wavelength of 563 nm, 540 nm, and 510 nm, respectively. The potential biomedical applications of these nanoparticles were further investigated in vitro. Through the cytotoxicity testTT assay) by using L929 cell line, better biocompatibility was observed under the concentration below 150g/mL for the PEGylated nanoparticles; and 40g/mL for ZnO comparatively. The fluorescence images taken by a confocal microscope showed that a large amount of materials were uptaken by the cells treated with 10g/mL for 8 hours. The results suggested that these ZnO-related nanoparticles with different light emitting wavelengths are of great potential for in vitro cell imageing.
AB - The purpose of this study was using sol-gel method to prepare zinc oxidenO) with specific nanostructures, including the ZnO/PEGMEMA composites with core-shell structure. Pure ZnO nanoparticlesnO NPs), ZnO-PEG NPs, and ZnO/SiO2-PEG NPs were prepared. Their chemical composition, particle size distribution, and optical properties were investigated. Under UV light excitation, the prepared ZnO NPs, ZnO-PEG NPs, and ZnO/SiO2-PEG NPs showed light emission in the wavelength of 563 nm, 540 nm, and 510 nm, respectively. The potential biomedical applications of these nanoparticles were further investigated in vitro. Through the cytotoxicity testTT assay) by using L929 cell line, better biocompatibility was observed under the concentration below 150g/mL for the PEGylated nanoparticles; and 40g/mL for ZnO comparatively. The fluorescence images taken by a confocal microscope showed that a large amount of materials were uptaken by the cells treated with 10g/mL for 8 hours. The results suggested that these ZnO-related nanoparticles with different light emitting wavelengths are of great potential for in vitro cell imageing.
KW - Confocal Microscope.
KW - Core-Shell
KW - In Vitro Study
KW - Optical Properties
KW - PEGMEMA
KW - Sol-Gel
KW - Zinc Oxide Nanoparticle
UR - https://www.scopus.com/pages/publications/84889045556
U2 - 10.1166/jnn.2013.7921
DO - 10.1166/jnn.2013.7921
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C2 - 24245153
AN - SCOPUS:84889045556
SN - 1533-4880
VL - 13
SP - 6846
EP - 6851
JO - Journal of Nanoscience and Nanotechnology
JF - Journal of Nanoscience and Nanotechnology
IS - 10
ER -