文献类型: 外文期刊
作者: Guan, Tianzhu 1 ; Sun, Yonghai 1 ; Li, Tiezhu 2 ; Hou, Ligang 2 ; Zhang, Jie 2 ; Wang, Yongjun 2 ;
作者机构: 1.Jilin Univ, Coll Food Sci & Engn, Changchun, Jilin, Peoples R China
2.Jilin Acad Agr Sci, Inst Agr Resources & Environm, Changchun 130033, Jilin, Peoples R China
关键词: bisphenol compounds; urine; estrogen receptor alpha
期刊名称:BIOTECHNOLOGY AND APPLIED BIOCHEMISTRY ( 影响因子:2.431; 五年影响因子:2.124 )
ISSN: 0885-4513
年卷期: 2019 年 66 卷 1 期
页码:
收录情况: SCI
摘要: Human exposure to bisphenol compounds (BPs) has been implicated in the development of several chronic diseases. Instead of exploiting the traditional methods for determination of BPs, this work confirms that the human estrogen receptor alpha ligand binding domain (hER alpha-LBD) is a powerful recognition element that can be used to monitor multi-residue of BPs in urine samples by fluorescence polarization (FP) assay. Test parameters were optimized for the best performance. Under the optimal conditions, the IC50 values of BPs are in the range of 0.04-1.61 mu g mL(-1). Recovery experiments were then performed to assess the accuracy and precision of the established method. The results detected by FP assay show good agreements with that of liquid chromatography-tandem mass spectrometry method with a fit of R-2 = 0.9372 and 0.9640 for BPE and BPAP, respectively. A computational methodology, ligand-based pharmacophore model, was also employed to further explore the broad-specific of tested compounds. It was found that the two hydrogen bond acceptor features and one hydrophobic aliphatic feature were essential for the corresponding cross-reactivity results from the FP assay. All these results suggest that the established method can be successfully applied to monitor the occurrence of BPs in urine. (C) 2018 International Union of Biochemistry and Molecular Biology, Inc.
- 相关文献
作者其他论文 更多>>
-
Intercropping outweighs straw incorporation driving community and functional diversity of microarthropods after 5 years of tillage practices
作者:Liu, Yuhang;Gao, Qiang;Sun, Xin;Wang, Bin;Sun, Xin;Liu, Yuhang;Wang, Yongjun;Yao, Fanyun;Wang, Bin;Sun, Xin;Wu, Haitao;Sun, Xin
关键词:Maize-peanut intercropping; Microarthropods; Straw incorporation; Sustainable agriculture
-
Psoralen and Isopsoralen Activate Nuclear Factor Erythroid 2-Related Factor 2 Through Interaction With Kelch-Like ECH-Associated Protein 1
作者:Lv, Chengyu;Wang, Song;Sun, Chang;Chen, Yihao;Wang, Chao;Yuan, Cuiping;Qin, Fengxian;Li, Tiezhu;Liu, Jing
关键词:antioxidant response element; isopsoralen; molecular docking; Nrf2; psoralen
-
Leveraging cover crop functional traits and nitrogen synchronization for yield-optimized waxy corn production systems
作者:Sun, Mengjing;Zhang, Long;Zhou, Jiangkuo;Liu, Ziping;Peng, Cong;Jia, Zechen;Lv, Yanjie;Wang, Yongjun;Sun, Mengjing;Zhang, Long;Zhou, Jiangkuo;Liu, Ziping;Peng, Cong;Jia, Zechen;Lv, Yanjie;Wang, Yongjun;Sun, Mengjing;Zhang, Long;Zhou, Jiangkuo;Liu, Ziping;Peng, Cong;Jia, Zechen;Lv, Yanjie;Wang, Yongjun
关键词:waxy corn; cover crop; yield; nitrogen use efficiency; path analysis
-
Integrating physiological, metabolome and transcriptome revealed the response of maize seeds to combined cold and high soil moisture stresses
作者:Meng, Xiangzeng;Wang, Lichun;Wang, Yongjun;Meng, Xiangzeng;Cao, Yujun;Lv, Yanjie;Wang, Lichun;Wang, Yongjun
关键词:
-
The effects of a combination of maize/peanut intercropping and residue return on soil microbial nutrient limitation in maize fields
作者:Yao, Fanyun;Cao, Yujun;Liang, Jie;Liu, Xiaodan;Liu, Zhiming;Lv, Yanjie;Wei, Wenwen;Xu, Wenhua;Wang, Yongjun;Qi, Wei;Wang, Yongjun;Yu, Yang;Li, Xiang;Feng, Jian
关键词:Soil nutrients; Microbial biomass; Extracellular enzymes; C:N:P stoichiometry; Nutrient limitation
-
Thriving in adversity: Understanding how maize seeds respond to the challenge of combined cold and high humidity stress
作者:Meng, Xiangzeng;Chen, Denglong;Wang, Yongjun;Wang, Lichun;Meng, Xiangzeng;Chen, Denglong;Lv, Yanjie;Xu, Wenhua;Wang, Yongjun;Wang, Lichun
关键词:Seed germination; Abiotic stress; Antioxidant enzyme; Metabolomic; Glycolysis
-
Elimination of Intraspecific Competition Does Not Improve Maize Leaf Physiological and Biochemical Responses to Topsoil Degradation
作者:Zhang, Shan;Jia, Zechen;Lv, Yanjie;Wang, Yongjun;Zhang, Shan;Guo, Zhongxiao;Lv, Yanjie;Wang, Yongjun;Zhang, Xiaolong;Liu, Kaichang
关键词:topsoil depth; maize planting density; intraspecific competition; nitrogen metabolism enzymes; photosynthesis enzymes; yield variability



