| [1] | Rappaport S M, Smith M T. Science, 2010, 330(6003): 460 | | [2] | Willett W C. Science, 2002, 296(5568): 695 | | [3] | Wild C P. Cancer Epidemiol Biomark Prev, 2005, 14(8): 1847 | | [4] | Niedzwiecki M M, Miller G W. Environ Health Perspect, 2017, 125(6): 064502 | | [5] | Cui Y, Balshaw D M, Kwok R K, et al. Environ Health Perspect, 2016, 124(8): A137 | | [6] | Dennis K K, Marder E, Balshaw D M, et al. Environ Health Perspect, 2017, 125(4): 502 | | [7] | Lioy P J, Rappaport S M. Environ Health Perspect, 2011, 119: 466 | | [8] | Escher B I, Hackermüller J, Polte T, et al. Environ Int, 2017, 99: 97 | | [9] | Wild C P. Int J Epidemiol, 2012, 41(1): 24 | | [10] | Miller G W, Jones D P. Toxicol Sci, 2014, 137(1): 1 | | [11] | Rappaport S M. J Expo Sci Environ Epidemiol, 2011, 21(1): 5 | | [12] | Zhang P, Carlsten C, Chaleckis R, et al. Environ Sci Technol Lett, 2021, 8(10): 839 | | [13] | Niedzwiecki M M, Walker D I, Vermeulen R, et al. Annu Rev Pharmacol Toxicol, 2019, 59: 107 | | [14] | Haddad N, Andrianou X D, Makris K C. Curr Pollut Rep, 2019, 5: 378 | | [15] | Sun L Y, Wang J Z, Peng S C, et al. Acta Scientiae Circumstantiae, 2016, 36(1): 27 | | [15] | 孙路遥, 王继忠, 彭书传, 等. 环境科学学报, 2016, 36(1): 27 | | [16] | Andra S S, Austin C, Patel D, et al. Environ Int, 2017, 100: 32 | | [17] | Xue J, Wu Q, Sakthivel S, et al. Environ Res, 2015, 137: 120 | | [18] | Rappaport S M, Barupal D K, Wishart D, et al. Environ Health Perspect, 2014, 122(8): 769 | | [19] | Li J, Liu W, Xia W, et al. Environ Sci Technol, 2019, 53(11): 6546 | | [20] | Zhao H, Li J, Ma X, et al. Chin Chem Lett, 2018, 29(1): 102 | | [21] | Marshall A G, Hendrickson C L. Annu Rev Anal Chem, 2008, 1: 579 | | [22] | Lin L, Lin H, Zhang M, et al. RSC Adv, 2015, 5(130): 107623 | | [23] | Kern S, Fenner K, Singer H P, et al. Environ Sci Technol, 2009, 43(18): 7039 | | [24] | Hernández F, Ibáñez M, Gracia-Lor E, et al. J Sep Sci, 2011, 34(24): 3517 | | [25] | Wang W, Zhang Y, Cao G, et al. Environ Res, 2022, 206: 112597 | | [26] | Wang W, Cao G, Zhang J, et al. Environ Sci Technol, 2022, 56(15): 10629 | | [27] | Song Y, Xie P, Cai Z. Rapid Commun Mass Spectrom, 2018, 32(6): 495 | | [28] | Cappiello A, Famiglini G, Palma P, et al. Anal Bioanal Chem, 2014, 406: 2779 | | [29] | Gerona R R, Schwartz J M, Pan J, et al. J Expo Sci Environ Epidemiol, 2018, 28(2): 101 | | [30] | Randazzo G M, Tonoli D, Strajhar P, et al. J Chromatogr B, 2017, 1071: 11 | | [31] | Randazzo G M, Tonoli D, Hambye S, et al. Anal Chim Acta, 2016, 916: 8 | | [32] | Forsberg E M, Huan T, Rinehart D, et al. Nat Protoc, 2018, 13(4): 633 | | [33] | Hernández F, Portolés T, Pitarch E, et al. J Mass Spectrom, 2009, 44(1): 1 | | [34] | Broecker S, Herre S, Wüst B, et al. Anal Bioanal Chem, 2011, 400: 101 | | [35] | Shi J, Xu C, Xiang L, et al. Environ Sci Technol, 2020, 54(17): 10570 | | [36] | Zhang Y, Chen Y J, Song Y, et al. Chin Chem Lett, 2021, 32(2): 801 | | [37] | Simon E, Lamoree M H, Hamers T, et al. TrAC-Trends Anal Chem, 2015, 67: 179 | | [38] | Wild C P, Scalbert A, Herceg Z. Environ Mol Mutagen, 2013, 54(7): 480 | | [39] | Petrick L, Edmands W, Schiffman C, et al. Metabolomics, 2017, 13: 1 | | [40] | Jamin E L, Bonvallot N, Tremblay-Franco M, et al. Anal Bioanal Chem, 2014, 406: 1149 | | [41] | Houten S M, Chen J, Belpoggi F, et al. PLoS One, 2016, 11(7): e0159919 | | [42] | Breitner S, Schneider A, Devlin R B, et al. Environ Int, 2016, 97: 76 | | [43] | Wang Z, Zheng Y, Zhao B, et al. J Proteome Res, 2015, 14(6): 2583 | | [44] | Song Y, Li R, Zhang Y, et al. Sci Total Environ, 2019, 651: 3139 | | [45] | Qi Z, Song Y, Ding Q, et al. Ecotoxicol Environ Saf, 2019, 168: 378 | | [46] | Li R, Zhang M, Wang Y, et al. Toxicol Res, 2018, 7(2): 271 | | [47] | He Z, Zhang H, Song Y, et al. J Hazard Mater, 2022, 423: 127129 | | [48] | Wang X, Song Y, Hu D, et al. Chem Res Toxicol, 2021, 34(5): 1250 | | [49] | Zhao C, Xie P, Yong T, et al. Sci Bull, 2021, 66(6): 578 | | [50] | Chen M, Liao X, Yan S C, et al. Environ Sci Technol, 2020, 54(15): 9519 | | [51] | Chai X, Wen L, Song Y, et al. Sci Total Environ, 2023, 875: 162615 | | [52] | Liao X, Zou T, Chen M, et al. Sci Total Environ, 2021, 755: 142617 | | [53] | Yang C, He S, Lu S, et al. Sci Total Environ, 2022, 809: 151132 | | [54] | Zhang H, Shao X, Zhao H, et al. Environ Sci Technol, 2019, 53(9): 5406 | | [55] | Zhang H, Lu Y, Liang Y, et al. J Hazard Mater, 2020, 392: 122475 | | [56] | Elshal M F, McCoy J P. Methods, 2006, 38(4): 317 | | [57] | Bassig B A, Dai Y, Vermeulen R, et al. Carcinogenesis, 2017, 38(11): 1104 | | [58] | Woeller C F, Thatcher T H, Van Twisk M D, et al. J Occup Environ Med, 2016, 58(8): 62 | | [59] | Ji F, Sreenivasmurthy S G, Wei J, et al. J Hazard Mater, 2019, 378: 120738 | | [60] | Huang W, Zhu L, Cao G, et al. Chem Res Toxicol, 2021, 34(5): 1319 | | [61] | Xie G, Zhu L, Zhang Y, et al. Small Struct, 2021, 2(3): 2000123 | | [62] | Zhao C, Xie P, Wang H, et al. J Hazard Mater, 2018, 358: 503 | | [63] | Yates J R, Ruse C I, Nakorchevsky A. Annu Rev Biomed Eng, 2009, 11: 49 | | [64] | Fernandez A F, Assenov Y, Martin-Subero J I, et al. Genome Res, 2012, 22(2): 407 | | [65] | Go Y M, Jones D P. Redox Biol, 2014, 2: 358 | | [66] | Salas L A, Bustamante M, Gonzalez J R, et al. Epigenetics, 2015, 10(7): 650 | | [67] | Lee K W, Richmond R, Hu P, et al. Environ Health Perspect, 2015, 123(2): 193 | | [68] | Chang J S, Lin Z X, Liu Y J, et al. J Pharm Biomed Anal, 2021, 197: 113969 | | [69] | Zhao C, Guo L, Dong J, et al. Innovation, 2021, 2(4): 100151 | | [70] | Soudah T, Zoabi A, Margulis K. Mass Spectrom Rev, 2023, 42(2): 751 | | [71] | Vallianatou T, Shariatgorji R, Nilsson A, et al. ACS Chem Neurosci, 2021, 12(10): 1811 | | [72] | Lin Z, Wu J, Dong Y, et al. Anal Chem, 2018, 90(18): 10872 | | [73] | Zhao C, Yong T, Zhang Y, et al. J Hazard Mater, 2021, 414: 125391 | | [74] | Zhao C, Xie P, Yong T, et al. Anal Chem, 2018, 90(5): 3196 | | [75] | Xie P, Liang X, Song Y, et al. Anal Chem, 2020, 92(16): 11341 | | [76] | Xie P, Zhang H, Wu P, et al. Anal Chem, 2022, 94(40): 13667 | | [77] | Hamadeh H K, Bushel P R, Jayadev S, et al. Toxicol Sci, 2002, 67(2): 219 | | [78] | Wang T W, Vermeulen R C, Hu W, et al. Carcinogenesis, 2015, 36(12): 1494 | | [79] | McHale C M, Zhang L, Lan Q, et al. Genomics, 2009, 93(4): 343 | | [80] | Jiang P, Hou Z, Bolin J M, et al. Toxicol Sci, 2017, 159(1): 251 | | [81] | Grondin C J, Davis A P, Wiegers T C, et al. Environ Health Perspect, 2018, 126(1): 014501 | | [82] | Vineis P, Chadeau-Hyam M, Gmuender H, et al. Int J Hyg Environ Health, 2017, 220(2): 142 | | [83] | Vrijheid M, Slama R, Robinson O, et al. Environ Health Perspect, 2014, 122(6): 535 | | [84] | Pragst F, Broecker S, Hastedt M, et al. Ther Drug Monit, 2013, 35(6): 737 | | [85] | Andra S S, Austin C, Wright R O, et al. Environ Int, 2015, 83: 137 | | [86] | Pleil J D, Stiegel M A. Anal Chem, 2013, 85: 9984 | | [87] | Jia S, Xu T, Huan T, et al. Environ Sci Technol, 2019, 53(9): 5445 | | [88] | Walker D I, Mallon T, Hopke P K, et al. J Occup Environ Med, 2016, 58(8): 12 | | [89] | Metz T O, Baker E S, Schymanski E L, et al. Bioanalysis, 2017, 9(1): 81 | | [90] | Johnson S R, Lange B M. Front Bioeng Biotechnol, 2015, 3: 22 |
|