Facile fabrication of graphene oxide loaded with silver nanoparticles as antifungal materials

文献类型: 外文期刊

第一作者: Cui, Jianghu

作者: Cui, Jianghu;Yang, Yunhua;Zheng, Mingtao;Liu, Yingliang;Xiao, Yong;Lei, Bingfu;Chen, Wei

作者机构:

关键词: graphene oxide;silver nanoparticles;antifungal;oxidative stress;apoptosis;hemolysis

期刊名称:MATERIALS RESEARCH EXPRESS ( 影响因子:1.62; 五年影响因子:1.618 )

ISSN: 2053-1591

年卷期: 2014 年 1 卷 4 期

页码:

收录情况: SCI

摘要: Graphene oxide loaded silver nanoparticles (GO-Ag) were synthesized using a simple method. Our evidence showed that silver nanoparticles (Ag NPs) were successfully loaded on the surface of graphene oxide sheets. The antifungal property of GO-Ag composites was investigated. The results revealed that the obtained GO-Ag composites exhibit enhanced antifungal property in comparison with that of Ag NPs. The toxicity of GO-Ag and Ag NPs were systematically evaluated. The study of cell viability, lactate dehydrogenase, reactive oxygen species, apoptosis/necrosis and hemolysis revealed that GO-Ag composites have lower cytotoxicity and better blood compatibility than Ag NPs. Therefore, these findings provide nanotoxicological information regarding GO-Ag composites which may be alternative antifungal materials in their application of biomedical fields.

分类号:

  • 相关文献

[1]Oxidative Stress-Mediated Cytotoxicity of Cadmium in Chicken Splenic Lymphocytes. Li, Jin-Long,Tang, Zhao-Xin,Li, Jin-Long,Li, Shu,Xu, Shi-Wen,Li, Hui-Xin,Wang, Xiao-Long. 2010

[2]Protective Effects of Quercetin on Cadmium-induced Cytotoxicity in Primary Cultures of Rat Proximal Tubular Cells. Wang Lin,Liu Gang,Wang Zhen Yong,Lin Shu Qian,He Yuan Long. 2013

[3]Toxic dinoflagellate Alexandrium tamarense induces oxidative stress and apoptosis in hepatopancreas of shrimp (Fenneropenaeus chinensis). Liang Zhongxiu,Ren Hai,Liang Zhongxiu,Li Jian,Li Jitao,Tan Zhijun,Zhao Fazhen. 2014

[4]Effects of nitrite exposure on haematological parameters, oxidative stress and apoptosis in juvenile turbot (Scophthalmus maximus). Jia, Rui,Huo, Huan-Huan,Jia, Rui,Lei, Ji-Lin,Liu, Bao-Liang,Huang, Bin,Yin, Shu-Ting,Han, Cen.

[5]Rhizoma smilacis glabrae protects rats with gentamicin-induced kidney injury from oxidative stress-induced apoptosis by inhibiting caspase-3 activation. Liu, Cuiyan,Kang, Youxi,Yang, Zisheng,Han, Chunyang,Zhou, Xiuhong,Gu, Jingang.

[6]Molecular cloning, immunohistochemical localization, characterization and expression analysis of caspase-8 from the blunt snout bream (Megalobrama amblycephala) exposed to ammonia. Sun, Shengming,Ge, Xianping,Zhu, Jian,Zhang, Wuxiao,Zhang, Qiong.

[7]Immune and physiological responses of pufferfish (Takifugu obscurus) under cold stress. Cheng, Chang-Hong,Guo, Zhi-Xun,Ye, Chao-Xia,Wang, An-Li,Guo, Zhi-Xun.

[8]Cytoprotective effect of deferiprone against aluminum chloride-induced oxidative stress and apoptosis in lymphocytes. Zhuang, Cuicui,Zhang, Haiyang,Song, Miao,Han, Yanfei,Li, Yanfei,She, Yue,Zhu, Yanzhu. 2018

[9]Long-term High-fat High-sucrose Diet Promotes Enlarged Islets and beta-Cell Damage by Oxidative Stress in Bama Minipigs. Zhao, Zhan-zhao,Xin, Lei-lei,Xia, Ji-han,Yang, Shu-lin,Li, Kui,Zhao, Zhan-zhao,Chen, Yao-xing. 2015

[10]Protective Effects of Cynaroside Against H2O2-Induced Apoptosis in H9c2 Cardiomyoblasts. Sun, Xiao-bo,Sun, Xiao-bo. 2011

[11]Carbendazim has the potential to induce oxidative stress, apoptosis, immunotoxicity and endocrine disruption during zebrafish larvae development. Jiang, Jinhua. 2015

[12]Pretilachlor has the potential to induce endocrine disruption, oxidative stress, apoptosis and immunotoxicity during zebrafish embryo development. Jiang, Jinhua,Chen, Yanhong,Yu, Ruixian,Zhao, Xueping,Wang, Qiang,Cai, Leiming. 2016

[13]An isoflavonoid-enriched extract from Pueraria lobata (kudzu) root protects human umbilical vein endothelial cells against oxidative stress induced apoptosis. Gao, Ying,Gao, Ying,Wang, Xu,He, Chunnian.

[14]X/XO or H2O2 induced IPEC-J2 cell as a new in vitro model for studying apoptosis in post-weaning piglets. Cai, Xuan,Zhu, Lihui,Sheng, Yongshuai,Guo, Qi,Bao, Jian,Xu, Jianxiong,Cai, Xuan,Zhu, Lihui,Sheng, Yongshuai,Guo, Qi,Bao, Jian,Xu, Jianxiong,Chen, Xiaolian.

[15]Neuroprotection against hydrogen peroxide-induced toxicity by Dictyophora echinovolvata polysaccharide via inhibiting the mitochondria-dependent apoptotic pathway. Yu, Wen-Xuan,Dong, Xiao-Li,Lin, Chen-Qiang,Lin, Xin-Jian,Yu, Wen-Xuan,Dong, Xiao-Li,Yu, Wen-Xuan,Dong, Xiao-Li,Zhao, Qing.

[16]Design, expression and characterization of the hybrid antimicrobial peptide LHP7, connected by a flexible linker, against Staphylococcus and Streptococcus. Xi, Di,Xiang, Wensheng,Xi, Di,Teng, Da,Wang, Xiumin,Mao, Ruoyu,Yang, Yalin,Wang, Jianhua,Xi, Di,Teng, Da,Wang, Xiumin,Mao, Ruoyu,Yang, Yalin,Wang, Jianhua. 2013

[17]Contrasting silver nanoparticle toxicity and detoxification strategies in Microcystis aeruginosa and Chlorella vulgaris: New insights from proteomic and physiological analyses. Qian, Haifeng,Chen, Jun,Zhu, Kun,Fu, Zhengwei,Lu, Haiping,Lavoie, Michel,Chen, Si,Zhou, Zhongjing,Deng, Zhiping. 2016

[18]A Colorimetric Sensor for the Highly Selective Detection of Sulfide and 1,4-Dithiothreitol Based on the In Situ Formation of Silver Nanoparticles Using Dopamine. Zhao, Lingzhi,Miao, Yanqing,Liu, Chunye,Zhao, Lingzhi,Zhang, Chenxiao,Zhao, Liu. 2017

[19]Colorimetric Detection of Cr3+ in Aqueous Solution Based on Cofunctionalized Silver Nanoparticles Modified with 4-Nitrobenzenethiol and 4-Mercaptobenzoic Acid. Zhang, Zhikun,Zhou, Ying,Yang, Jing-Kui,Zhao, Hong,He, Yujian,Wang, Peilong,He, Yujian,Cao, Zhiqin,Luo, Maoqiang.

[20]Phytotoxicity of Silver Nanoparticles to Peanut (Arachis hypogaea L.): Physiological Responses and Food Safety. Rui, Mengmeng,Yang, Jie,Jiang, Fuping,Pan, Yue,Xiang, Zhiqian,Hao, Yi,Rui, Yukui,Rui, Mengmeng,Tang, Xinlian,Ma, Chuanxin,Xing, Baoshan,Ma, Chuanxin,Cao, Weidong,Ma, Chuanxin. 2017

作者其他论文 更多>>