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纳米二氧化硅在人支气管上皮细胞内的亚细胞分布和遗传毒性

BACKGROUND AND OBJECTIVE: Silicon nanoparticles are widely used in daily life. Therefore, they attract increased attention because of their potential biotoxicity to the lungs when inhaled. The aims of this study are to explore the organism distribution and genotoxicity of silica nanoparticles in hum...

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Detalles Bibliográficos
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 中国肺癌杂志编辑部 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6015129/
https://www.ncbi.nlm.nih.gov/pubmed/23514939
http://dx.doi.org/10.3779/j.issn.1009-3419.2013.03.01
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description BACKGROUND AND OBJECTIVE: Silicon nanoparticles are widely used in daily life. Therefore, they attract increased attention because of their potential biotoxicity to the lungs when inhaled. The aims of this study are to explore the organism distribution and genotoxicity of silica nanoparticles in human bronchial epithelial cells (BEAS-2B). METHODS: The biodistribution of silica with different particle sizes in human bronchial epithelial cells was observed by transmission electron microscopy (TEM). DNA damage was detected by single-cell gel electrophoresis (comet assay). RESULTS: TEM revealed that SiO2 nanoparticles with different sizes can be uptaken by cells and be localized in the cytoplasm and the nucleus. Compared with micro-silica, nano-silica in BEAS-2B cells can inflict more severe DNA damage (P < 0.05). CONCLUSION: The particle size of silica nanoparticles can be used to determine their distribution in biological cells. Compared with micro-silica, nano-silica has higher genotoxicity.
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spelling pubmed-60151292018-07-06 纳米二氧化硅在人支气管上皮细胞内的亚细胞分布和遗传毒性 Zhongguo Fei Ai Za Zhi 基础研究 BACKGROUND AND OBJECTIVE: Silicon nanoparticles are widely used in daily life. Therefore, they attract increased attention because of their potential biotoxicity to the lungs when inhaled. The aims of this study are to explore the organism distribution and genotoxicity of silica nanoparticles in human bronchial epithelial cells (BEAS-2B). METHODS: The biodistribution of silica with different particle sizes in human bronchial epithelial cells was observed by transmission electron microscopy (TEM). DNA damage was detected by single-cell gel electrophoresis (comet assay). RESULTS: TEM revealed that SiO2 nanoparticles with different sizes can be uptaken by cells and be localized in the cytoplasm and the nucleus. Compared with micro-silica, nano-silica in BEAS-2B cells can inflict more severe DNA damage (P < 0.05). CONCLUSION: The particle size of silica nanoparticles can be used to determine their distribution in biological cells. Compared with micro-silica, nano-silica has higher genotoxicity. 中国肺癌杂志编辑部 2013-03-20 /pmc/articles/PMC6015129/ /pubmed/23514939 http://dx.doi.org/10.3779/j.issn.1009-3419.2013.03.01 Text en 版权所有©《中国肺癌杂志》编辑部2013 https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed in accordance with the terms of the Creative Commons Attribution (CC BY 3.0) License. See: https://creativecommons.org/licenses/by/3.0/
spellingShingle 基础研究
纳米二氧化硅在人支气管上皮细胞内的亚细胞分布和遗传毒性
title 纳米二氧化硅在人支气管上皮细胞内的亚细胞分布和遗传毒性
title_full 纳米二氧化硅在人支气管上皮细胞内的亚细胞分布和遗传毒性
title_fullStr 纳米二氧化硅在人支气管上皮细胞内的亚细胞分布和遗传毒性
title_full_unstemmed 纳米二氧化硅在人支气管上皮细胞内的亚细胞分布和遗传毒性
title_short 纳米二氧化硅在人支气管上皮细胞内的亚细胞分布和遗传毒性
title_sort 纳米二氧化硅在人支气管上皮细胞内的亚细胞分布和遗传毒性
topic 基础研究
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6015129/
https://www.ncbi.nlm.nih.gov/pubmed/23514939
http://dx.doi.org/10.3779/j.issn.1009-3419.2013.03.01
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