English  |  正體中文  |  简体中文  |  全文筆數/總筆數 : 18034/20233 (89%)
造訪人次 : 23772129      線上人數 : 728
RC Version 7.0 © Powered By DSPACE, MIT. Enhanced by NTU Library IR team.
搜尋範圍 查詢小技巧:
  • 您可在西文檢索詞彙前後加上"雙引號",以獲取較精準的檢索結果
  • 若欲以作者姓名搜尋,建議至進階搜尋限定作者欄位,可獲得較完整資料
  • 進階搜尋
    請使用永久網址來引用或連結此文件: https://ir.cnu.edu.tw/handle/310902800/34577


    標題: Comparing different surface modifications of zinc oxide nanoparticles in the developmental toxicity of zebrafish embryos and larvae
    作者: Chen, Zi-Yu
    Yang, Yi-Chun
    Wang, Bour-, Jr.
    Cheng, Fong-Yu
    Lee, Yen-Ling
    Lee, Yu-Hsuan
    Wang, Ying-Jan
    貢獻者: National Cheng Kung University
    National Cheng Kung University
    National Cheng Kung University Hospital
    Department of Cosmetic Science and Institute of Cosmetic Science, Chia Nan University of Pharmacy & Science
    Chinese Culture University
    China Medical University Taiwan
    China Medical University Taiwan
    China Medical University Hospital - Taiwan
    China Medical University Taiwan
    National Cheng Kung University
    關鍵字: toxicology
    systems
    metal
    日期: 2022
    上傳時間: 2023-12-11 13:58:48 (UTC+8)
    出版者: ACADEMIC PRESS INC ELSEVIER SCIENCE
    摘要: Nanotechnology allows for a greater quality of life, but may also cause environmental and organismic harm. Zinc oxide nanoparticles (ZnONPs) are one of the most commonly used metal oxide nanoparticles for commercial and industrial products. Due to its extensive use in various fields, there has already been much concern raised about the environmental health risks of ZnONPs. Many studies have investigated the toxicological profile of ZnONPs in zebrafish embryonic development; however, the specific characteristics of ZnONPs in zebrafish embryonic/larval developmental damage and their molecular toxic mechanisms of liver development are yet to be fully elucidated. This study aimed to reveal the hazard ranking of different surface modifications of ZnONPs on developing zebrafish and the toxicological mechanisms of these modified ZnONPs in liver tissue. The similar to 30 nm ZnONPs with amino-(NH2-ZnONPs) or carboxyl-(COOH-ZnONPs) modification were incorporated during the embryonic/larval stage of zebrafish. Severe toxicity was observed in both ZnONP groups, especially NH2-ZnONPs, which presented a higher toxicity in the low concentration groups. After prolonging the exposure time, the long-term toxicity assay showed a greater retardation in body length of zebrafish in the NH2-ZnONP group. Response data from multiple toxicity studies was integrated for the calculation of the EC50 values of bulk ZnO and ZnONPs, and the hazard levels were found to be decreasing in the order of NH2-, COOH-ZnONPs and bulk ZnO. Notably, NH2-ZnONPs induced ROS burden in the developing liver tissue, which activated autophagy-related gene and protein expression and finally induced liver cell apoptosis to reduce liver size. In conclusion, our findings are conducive to understanding the hazard risks of different surface modifications of ZnONPs in aquatic environments and will also be helpful for choosing the type of ZnONPs in future industrial applications.
    關聯: ECOTOXICOLOGY AND ENVIRONMENTAL SAFETY, v.243, 113967
    顯示於類別:[化妝品應用與管理系(所)] 期刊論文

    文件中的檔案:

    檔案 描述 大小格式瀏覽次數
    index.html0KbHTML92檢視/開啟
    j.ecoenv.2022.113967.pdf8443KbAdobe PDF51檢視/開啟


    在CNU IR中所有的資料項目都受到原著作權保護.

    TAIR相關文章

    DSpace Software Copyright © 2002-2004  MIT &  Hewlett-Packard  /   Enhanced by   NTU Library IR team Copyright ©   - 回饋