Toxicity, residue, degradation and detection methods of the insecticide triazophos

被引:1
|
作者
Fang-Wei Yang
Yi-Xuan Li
Fa-Zheng Ren
Ran Wang
Guo-Fang Pang
机构
[1] China Agricultural University,Beijing Advanced Innovation Center for Food Nutrition and Human Health, College of Food Science and Nutritional Engineering
[2] China Agricultural University,Key Laboratory of Functional Dairy, Co
[3] Chinese Academy of Inspection and Quarantine,constructed by Ministry of Education and Beijing Government, and Beijing Laboratory of Food Quality and Safety
来源
关键词
Triazophos; Organophosphorus insecticide; Toxicity; Exposure risk; Degradation;
D O I
暂无
中图分类号
学科分类号
摘要
Organophosphorus pesticides were widely used in agricultural production and in public health as insecticides and acaricides. Triazophos, an organophosphorus insecticide widely used in developing countries, has been found in agricultural products and the environment. Additionally, triazophos is toxic for aquatic organisms and poses a  risk of dietary exposure. This article reviews the toxicity, the residues in agricultural products, water and soil, exposure risk, metabolism, microbial degradation, hydrolysis, and photolytic and detection methods of triazophos. Commonly used methods for triazophos detection include chromatography-mass spectrometry and rapid methods based on antigen–antibody reactions. China had made many advances in studying triazophos-degrading bacteria and rapid detection methods of triazophos residues. We also found that triazophos causes oxidative stress, cell damage and tissue injury in animals through neurotoxicity, hepatotoxicity, nephrotoxicity, reproductive toxicity and genotoxicity.
引用
收藏
页码:1769 / 1785
页数:16
相关论文
共 50 条
  • [31] Airborne and Dermal Collection Methods of Gunshot Residue for Toxicity Studies
    Smith, Samuel Cole
    Black, Oscar Beau
    Roper, Courtney
    APPLIED SCIENCES-BASEL, 2022, 12 (09):
  • [32] Enzyme-linked Immunosorbent assay based on a monoclonal antibody for the detection of the insecticide triazophos: Assay optimization and application to environmental samples
    Liang, Chizhou
    Jin, Renyao
    Gui, Wenjun
    Zhu, Guonian
    ENVIRONMENTAL SCIENCE & TECHNOLOGY, 2007, 41 (19) : 6783 - 6788
  • [33] Kinetics and products of photo-fenton degradation of triazophos
    Lin, K
    Yuan, DX
    Chen, M
    Deng, YZ
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2004, 52 (25) : 7614 - 7620
  • [34] TOXICITY OF THE INSECTICIDE LINDANE
    HENSCHLER, D
    DEUTSCHE MEDIZINISCHE WOCHENSCHRIFT, 1985, 110 (30) : 1183 - 1184
  • [35] ORGANOPHOSPHORUS INSECTICIDE TOXICITY
    GOLZ, HH
    HOLMES, JH
    JOURNAL OF THE AMERICAN MEDICAL ASSOCIATION, 1965, 193 (02): : 169 - &
  • [36] ELECTROENCEPHALOGRAMS IN INSECTICIDE TOXICITY
    HOOGENDAM, I
    DEVLIEGER, M
    VERSTEEG, JP
    ARCHIVES OF ENVIRONMENTAL HEALTH, 1962, 4 (01): : 86 - &
  • [37] Degradation of the Novel Heterocyclic Insecticide Pyraquinil in Water: Kinetics, Degradation Pathways, Transformation Products Identification, and Toxicity Assessment
    Jiang, Xunyuan
    Xiao, Lu
    Chen, Yan
    Huang, Congling
    Wang, Jiale
    Tang, Xuemei
    Wan, Kai
    Xu, Hanhong
    JOURNAL OF AGRICULTURAL AND FOOD CHEMISTRY, 2023, 71 (27) : 10277 - 10290
  • [38] Statistical methods for toxicity detection and testing
    Edler, L
    ENDOCRINE DISRUPTERS AND CARCINOGENIC RISK ASSESSMENT, 2002, 340 : 290 - 306
  • [39] UV degradation of carbofuran insecticide in aqueous solution: identification and toxicity evolution of by-products
    Mascolo, G
    Lopez, A
    Detomaso, A
    Guzzella, L
    4TH WORLD WATER CONGRESS: INNOVATION IN DRINKING WATER TREATMENT, 2004, 4 (5-6): : 313 - 319
  • [40] Monitoring of Insecticide Resistance and Genetic Analysis of Triazophos Resistance in Chilo suppressalis (Lepidoptera: Pyralidae)
    CAO Ming-zhang
    Department of Pesticide Science
    Rice Science, 2004, (Z1) : 297 - 304