Amarasiri de Silva M W. Drinking water and chronic kidney disease of unknown aetiology in Anuradhapura, Sri Lanka[J]. Anthropology & Medicine, 2019, 26(3):311-327
Gunarathna S, Gunawardana B, Jayaweera M, et al. Glyphosate and AMPA of agricultural soil, surface water, groundwater and sediments in areas prevalent with chronic kidney disease of unknown etiology, Sri Lanka[J]. Journal of Environmental Science & Health. Part B Pesticides Food Contaminants & Agricultural Wastes, 2018, 5(3):1-9
Herath A S, Kawakami T, Nagasawa S, et al. Arsenic, cadmium, lead, and chromium in well water, rice, and human urine in Sri Lanka in relation to chronic kidney disease of unknown etiology[J]. Water Health, 2018, 16(2):212-222
Jayatilake N, Mendis S, Maheepala P, et al. Chronic kidney disease of uncertain aetiology:Prevalence and causative factors in a developing country[J]. BMC Nephrology, 2013, 14:180-184
J önsson J, Camm R, Hall T. Removal and degradation of glyphosate in water treatment:A review[J]. Journal of Water Supply:Research and Technology, 2013, 62:395-408
Myers J P, Antoniou M N, Blumberg B, et al. Concerns over use of glyphosate-based herbicides and risks associated with exposures:A consensus statement[J]. Environmental Health, 2016, 15(19):11-23
Séralini G, Clair E, Mesnage R, et al. Republished study:Long-term toxicity of a Roundup herbicide and a Roundup-tolerantgenetically modified maize[J]. Environmental Sciences Europe, 2014, 26(1):14-33
Guyton K Z, Loomis D, Grosse Y, et al. Carcinogenicity of tetrachlorvinphos, parathion, malathion, diazinon, and glyphosate[J]. The Lancet Oncology, 2015, 16(5):490-491
Mesnage R, Arno M, Costanzo M, et al. Transcriptome profile analysis reflects rat liver and kidney damage following chronic ultra-low dose Roundup exposure[J]. Environmental Health, 2015, 14(1):16-28
Gao H, Chen J, Ding F, et al. Activation of the N-methyl-D-aspartate receptor is involved in glyphosate-induced renal proximal tubule cell apoptosis[J]. Journal of Applied Toxicology, 2019, 39(8):1096-1107
Indirakshi J, Sunnesh A, Aruna M, et al. Toxic epidermal necrolysis and acute kidney injury due to glyphosate ingestion[J]. Indian Journal of Critical Care Medicine, 2017, 21(3):167-169
Berman M C, Marino D J G, Quiroga M V, et al. Occurrence and levels of glyphosate and AMPA in shallow lakes from the Pampean and Patagonian regions of Argentina[J]. Chemosphere, 2018, 200:513-522
Jayasumana C, Gunatilake S, Senanayake P. Glyphosate, hard water and nephrotoxic metals:Are they the culprits behind the epidemic of chronic kidney disease of unknown etiology in Sri Lanka?[J]. International Journal of Environmental Research and Public Health, 2014, 11(2):2125-2147
Silva V, Montanarella L, Jones A, et al. Distribution of glyphosate and aminomethylphosphonic acid (AMPA) in agricultural topsoils of the European Union[J]. Science of the Total Environment, 2017, 621:1352-1359
Popp M, Hann S, Mentler A, et al. Determination of glyphosate and AMPA in surface and waste water using high-performance ion chromatography coupled to inductively coupled plasma dynamic reaction cell mass spectrometry (HPIC-ICP-DRC-MS)[J]. Analytical and Bioanalytical Chemistry, 2008, 391(2):695-699
Koskinen W C, Shankani L E J, Hall K E. Analysis of glyphosate and aminomethylphosphonic acid in water, plant materials and soil[J]. Pest Management Science, 2016, 72(3):423-432
Marek L E J, Koskinen W C. Simplified analysis of glyphosate and aminomethylphosphonic acid in water, vegetation and soil by liquid chromatography-tandem mass spectrometry[J]. Pest Management Science, 2014, 70(7):1158-1164
de Amarante Júnior O P, dos Santos T C R, Brito N M, et al. Methods of extraction and determination of the herbicide glyphosate:compact revision[J]. Química Nova, 2002, 25:420-428
Botero-Coy A M, Ibáñez M, Sancho J V, et al. Direct liquid chromatography-tandem mass spectrometry determination of underivatized glyphosate in rice, maize and soybean[J]. Journal of Chromatography A, 2013, 13(13):157-165
Scribner E A, Battaglin W A, Dietze J E, et al. Reconnaissance data for glyphosate, other selected herbicides, their degradation products, and antibiotics in 51 streams in nine Midwestern States[EB/OL]. (2003-01-01)[2020-02-05]. https://pubs.er.usgs.gov/publication/ofr03217.2003
Hidalgo C, Rios C, Hidalgo M, et al. Improved coupled-column liquid chromatographic method for the determination of glyphosate and aminomethylphosphonic acid residues in environmental waters[J]. Journal of Chromatography A, 2004, 1035(1):153-157
Royer A, Beguin S, Tabet J C, et al. Determination of glyphosate and aminomethylphosphonic acid residues in water by gas chromatography with tandem mass spectrometry after exchange ion resin purification and derivatization. Application on vegetable matrixes[J]. Analytical Chemistry, 2000, 72(16):3826-3832
Hu J Y, Chen C L, Li J Z. A simple method for the determination of glyphosate residues in soil by capillary gas chromatography with nitrogen phosphorus[J]. Journal of Analytical Chemistry, 2008, 63(4):371-375
Bergström L, Börjesson E, Stenström J. Laboratory and lysimeter studies of glyphosate and aminomethylphosphonic acid in a sand and a clay soil[J]. Journal of Environment Quality, 2011, 40(1):98-108
Freuze I, Jadas-Hecart A, Royer A, et al. Influence of complexation phenomena with multivalent cations on the analysis of glyphosate and aminomethyl phosphonic acid in water[J]. Journal of Chromatography A, 2007, 1175(2):197-206
Alferness P L, Iwata Y. Determination of glyphosate and aminomethylphosphonic acid in soil, plant and animal matrixes, and water by capillary gas chromatography with mass-selective detection[J]. Journal of Agricultural and Food Chemistry, 1994, 42(12):2751-2759
中华人民共和国质量监督检验检疫总局, 中国国家标准化管理委员会. GB/T 23750-2009植物性产品中草甘膦残留量的测定气相色谱-质谱法[S]. 北京:中华人民共和国质量监督检验检疫总局, 中国国家标准化管理委员会, 2009
Subramaniam V, Hoggard P E. Metal complexes of glyphosate[J]. Journal of Agricultural and Food Chemistry, 1988, 36(6):1326-1329
Coutinho C F B, Mazo L H. Complexos metálicos com o herbicida glifosato:Revisão[J]. Química Nova, 2005, 28(6):1038-1040
Simonsen L, Fomsgaard I S, Svensmark B, et al. Fate and availability of glyphosate and AMPA in agricultural soil[J]. Journal of Environmental Science and Health-Part B:Pesticides Food Contaminants and Agricultural Wastes, 2008, 43(5):365-375
Aparicio V C, De Gerónimo E, Marino D,et al. Environmental fate of glyphosate and aminomethylphosphonic acid in surface waters and soil of agricultural basins[J]. Chemosphere, 2013, 93(9):1866-1873