Citation: Mingbao Liu, Tian Zhang, Heng Liu, Baoyue Cao, Chengfang Qiao. ds区元素电子结构赋予的特殊物理化学性质及生理作用[J]. University Chemistry, 2026, 41(8): 176-193. doi: 10.12461/PKU.DXHX202507120
ds区元素电子结构赋予的特殊物理化学性质及生理作用
English
ds区元素电子结构赋予的特殊物理化学性质及生理作用
-
-
[1]
蒋育澄, 李淑妮, 翟全国, 魏灵灵, 刘志宏, 胡满成, 高胜利. 化学教育(中英文), 2023, 44(6), 29.
-
[2]
张丽荣, 程鹏, 徐家宁, 王莉, 宋天佑. 无机化学(下册). 第5版. 北京: 高等教育出版社, 2024: 748-779.
-
[3]
北京师范大学, 华中师范大学, 南京师范大学. 无机化学(下册). 第5版. 北京: 高等教育出版社, 2021: 759-795.
-
[4]
杨宏孝, 颜秀茹, 崔建中, 王建辉, 王兴尧, 秦学. 无机化学. 第4版. 北京: 高等教育出版社, 2010: 408-423.
-
[5]
The Periodic Table of the Elements. [2025-07-02]. https://iupac.org/wp-content/uploads/2018/12/IUPAC_Periodic_Table-01Dec18.jpgThe Periodic Table of the Elements. [2025-07-02]. https://iupac.org/wp-content/uploads/2018/12/IUPAC_Periodic_Table-01Dec18.jpg
-
[6]
D.I. Mendeleev, Zh. Russ. Khim. Obshch. 1869, 1(2/3), 60.D.I. Mendeleev, Zh. Russ. Khim. Obshch. 1869, 1(2/3), 60.
-
[7]
李淑妮, 翟全国, 蒋育澄, 胡满成, 刘志宏, 高胜利. 大学化学, 2019, 34(12), 2.
-
[8]
M. Planck, Ann. Phys. 1901, 318(4), 553.M. Planck, Ann. Phys. 1901, 318(4), 553.
-
[9]
A. Einstein, Ann. Phys. 1905, 322(6), 132.A. Einstein, Ann. Phys. 1905, 322(6), 132.
-
[10]
N. Bohr, Philos. Mag. 1913, 26, 1.N. Bohr, Philos. Mag. 1913, 26, 1.
-
[11]
C.J. Davisson, L.H. Germer, Nature 1927, 119(2998), 558.C.J. Davisson, L.H. Germer, Nature 1927, 119(2998), 558.
-
[12]
L.V. Broglie, Nature 1923, 112(2815), 540.L.V. Broglie, Nature 1923, 112(2815), 540.
-
[13]
E. Schrödinger, Butsuri 1926, 1(6), 1049.E. Schrödinger, Butsuri 1926, 1(6), 1049.
-
[14]
W. Heisenberg, Zeitschrift Physik 1927, 43(3), 172.W. Heisenberg, Zeitschrift Physik 1927, 43(3), 172.
-
[15]
F. Hund, Linienspektren und Periodisches System der Elemente. Springer: Berlin, German, 1927, pp. 1-20.F. Hund, Linienspektren und Periodisches System der Elemente. Springer: Berlin, German, 1927, pp. 1-20.
-
[16]
W.Z. Pauli, Zeitschrift für Physik 1925, 31(1), 765.W.Z. Pauli, Zeitschrift für Physik 1925, 31(1), 765.
-
[17]
J.C. Slater, Phys. Rev. 1930, 35(5), 509.J.C. Slater, Phys. Rev. 1930, 35(5), 509.
-
[18]
徐光宪. 化学学报, 1956, 22(1), 80.
-
[19]
L. Pauling, The Nature of the Chemical Bond and the Structure of Molecules and Crystals, Cornell University Press: New York, NY, USA, 1939.L. Pauling, The Nature of the Chemical Bond and the Structure of Molecules and Crystals, Cornell University Press: New York, NY, USA, 1939.
-
[20]
F.A. Cotton, G. Wilkinson, Basic Inorganic Chemistry, John Wiley & Sons Inc.: New York, NY, USA, 1976.F.A. Cotton, G. Wilkinson, Basic Inorganic Chemistry, John Wiley & Sons Inc.: New York, NY, USA, 1976.
-
[21]
D.W. Curtin, O. Gingerich, Phys. Today 1987, 40(6), 68.D.W. Curtin, O. Gingerich, Phys. Today 1987, 40(6), 68.
-
[22]
H.G. Mosely, J. Philos. Mag. 1913, 26(6), 1024.H.G. Mosely, J. Philos. Mag. 1913, 26(6), 1024.
-
[23]
J. Corish, G.M. Rosenblatt, Pure Appl. Chem. 2003, 75(10), 1613.J. Corish, G.M. Rosenblatt, Pure Appl. Chem. 2003, 75(10), 1613.
-
[24]
L.I. Elding, Pure Appl. Chem. 1994, 66(12), 2419.L.I. Elding, Pure Appl. Chem. 1994, 66(12), 2419.
-
[25]
P.J. Karol, R.C. Barber, B.M. Sherrill, E. Vardaci, T. Yamazaki, Pure Appl. Chem. 2016, 88(1-2), 139.P.J. Karol, R.C. Barber, B.M. Sherrill, E. Vardaci, T. Yamazaki, Pure Appl. Chem. 2016, 88(1-2), 139.
-
[26]
P.J. Karol, R.C. Barber, B.M. Sherrill, E. Vardaci, T. Yamazaki, Pure Appl. Chem. 2016, 88(1-2), 155.P.J. Karol, R.C. Barber, B.M. Sherrill, E. Vardaci, T. Yamazaki, Pure Appl. Chem. 2016, 88(1-2), 155.
-
[27]
S. Hofmann, V. Ninov, F.P. Heßberger, P. Armbruster, H. Folger, G. Münzenberg, H.J. Schött, A.G. Popeko, A.V. Yeremin, A.N. Andreyev, et al., Phys. A 1995, 350(4), 281.S. Hofmann, V. Ninov, F.P. Heßberger, P. Armbruster, H. Folger, G. Münzenberg, H.J. Schött, A.G. Popeko, A.V. Yeremin, A.N. Andreyev, et al., Phys. A 1995, 350(4), 281.
-
[28]
S. Hofmann, V. Ninov, F.P. Heßberger, P. Armbruster, H. Folger, G. Münzenberg, H.J. Schött, A.G. Popeko, A.V. Yeremin, A.N. Andreyev, et al., Phys. A 1996, 354(3), 229.S. Hofmann, V. Ninov, F.P. Heßberger, P. Armbruster, H. Folger, G. Münzenberg, H.J. Schött, A.G. Popeko, A.V. Yeremin, A.N. Andreyev, et al., Phys. A 1996, 354(3), 229.
-
[29]
International Union of Pure and Applied Chemistry, Transition Element, [2025-07-02], https://doi.org/10.1351/goldbook.T06456International Union of Pure and Applied Chemistry, Transition Element, [2025-07-02], https://doi.org/10.1351/goldbook.T06456
-
[30]
W. Jensen, J. Chem. Educ. 2003, 80(8), 952.W. Jensen, J. Chem. Educ. 2003, 80(8), 952.
-
[31]
M. Weller, T. Overton, J. Rourke, F. Armstrong, Inorganic Chemistry, 6th ed., Oxford University Press: Oxford, UK, 2014.M. Weller, T. Overton, J. Rourke, F. Armstrong, Inorganic Chemistry, 6th ed., Oxford University Press: Oxford, UK, 2014.
-
[32]
朱文祥, 郑事慎. 化学教育, 1989, 10(5), 44.
-
[33]
H. Gäggeler, A. Türler, M. Schädel, C.E. Düllmann, R. Eichler, J.V. Kratz, L.L. Andersson, J. Dvorak, W. Brüchle, M. Schäfer, et al., The Chemistry of Superheavy Elements, Springer: Berlin, Heidelberg, Germany, 2014.H. Gäggeler, A. Türler, M. Schädel, C.E. Düllmann, R. Eichler, J.V. Kratz, L.L. Andersson, J. Dvorak, W. Brüchle, M. Schäfer, et al., The Chemistry of Superheavy Elements, Springer: Berlin, Heidelberg, Germany, 2014.
-
[34]
X.F. Wang, L, Andrews, S. Riedel, M. Kaupp, G.J. Schrobilgen, Angew Chem. Int. Ed. 2007, 46(44), 8371.X.F. Wang, L, Andrews, S. Riedel, M. Kaupp, G.J. Schrobilgen, Angew Chem. Int. Ed. 2007, 46(44), 8371.
-
[35]
顾仁敖, 张哲如, 胡晓焜, 薛奇. 物理化学学报, 1995, 11(5), 473.
-
[36]
L. Shi, B, Li, S. Lu, D.X. Zhu, W.L. Li, Appl. Organomet. Chem. 2009, 23(5), 379.L. Shi, B, Li, S. Lu, D.X. Zhu, W.L. Li, Appl. Organomet. Chem. 2009, 23(5), 379.
-
[37]
D. Khalili, R. Evazi, A. Neshat, J. Aboonajmi, F. Osanlou, Inorg. Chim. Acta 2020, 506, 119470.D. Khalili, R. Evazi, A. Neshat, J. Aboonajmi, F. Osanlou, Inorg. Chim. Acta 2020, 506, 119470.
-
[38]
C. Balakrishnan, M. Theetharappan, P. Kowsalya, M,S. Natarajan, S. A. Neelakantan, S. Mariappan, Appl. Organomet. Chem. 2017, 31, e3776.C. Balakrishnan, M. Theetharappan, P. Kowsalya, M,S. Natarajan, S. A. Neelakantan, S. Mariappan, Appl. Organomet. Chem. 2017, 31, e3776.
-
[39]
C. Wang, M. Hao, Q. Qi, J. Dang, X. Dong, S. Lv, L. Xiong, H. Gao, G. Jia, Y. Chen, J. S Hartig, C. Li, Angew. Chem. Int. Ed. 2020, 59(9), 3444.C. Wang, M. Hao, Q. Qi, J. Dang, X. Dong, S. Lv, L. Xiong, H. Gao, G. Jia, Y. Chen, J. S Hartig, C. Li, Angew. Chem. Int. Ed. 2020, 59(9), 3444.
-
[40]
S. Han, A. Beckmann, H. Krüger, Eur. J. Inorg. Chem. 1999, 1999(1), 163.S. Han, A. Beckmann, H. Krüger, Eur. J. Inorg. Chem. 1999, 1999(1), 163.
-
[41]
S. Burke, Y. Xu, D. Margerum, Inorg. Chem. 2003, 42, 5807.S. Burke, Y. Xu, D. Margerum, Inorg. Chem. 2003, 42, 5807.
-
[42]
O. Mikhailov, D. Chachkov, Inorg. Chem. Commun. 2019, 106, 224.O. Mikhailov, D. Chachkov, Inorg. Chem. Commun. 2019, 106, 224.
-
[43]
亥克尔, 牛胜田. 食品化学与营养学. 北京: 人民卫生出版社, 1985.
-
[44]
费旁. 生物无机化学原理. 上海: 复旦大学出版社, 1984.
-
[45]
盖轲. 食品中微量元素的分析. 兰州: 甘肃科学技术出版社, 2004.
-
[46]
L. Chen, J. Min, F. Wang, Signal Transduct. Target. Ther. 2022, 7(1), 378.L. Chen, J. Min, F. Wang, Signal Transduct. Target. Ther. 2022, 7(1), 378.
-
[47]
H. Zischka, C. Einer, Int. J. Biochem. Cell Biol. 2018, 102, 71.H. Zischka, C. Einer, Int. J. Biochem. Cell Biol. 2018, 102, 71.
-
[48]
L.M. Guthrie, S.G. Kaler, D.J. Thiel, A. Silva, M. Zulkifli, T.C. Snavely, H.F. Greene, E. Nunez, B. Lynch, C. De Ville, et al., Science 2020, 368(6491), 620.L.M. Guthrie, S.G. Kaler, D.J. Thiel, A. Silva, M. Zulkifli, T.C. Snavely, H.F. Greene, E. Nunez, B. Lynch, C. De Ville, et al., Science 2020, 368(6491), 620.
-
[49]
Y. Wang, Y. Xiao, L. Ju, L. Guo, Y. Li, Clin. Transl. Med. 2024, 14(5), e1724.Y. Wang, Y. Xiao, L. Ju, L. Guo, Y. Li, Clin. Transl. Med. 2024, 14(5), e1724.
-
[50]
L. Yang, P. Yang, G.Y.H. Lip, J. Ren, Trends Pharm, Sci. 2023, 44(9), 573.L. Yang, P. Yang, G.Y.H. Lip, J. Ren, Trends Pharm, Sci. 2023, 44(9), 573.
-
[51]
R. Parsanathan, Hypertens. Res. 2024, 47(5), 1440.R. Parsanathan, Hypertens. Res. 2024, 47(5), 1440.
-
[52]
D.A. da Silva, A.D. Luca, R. Squitti, M. Rongioletti, L. Rossi, C.M.L. Machado, G. Cerchiaro, J. Inorg. Biochem. 2022, 226, 111634.D.A. da Silva, A.D. Luca, R. Squitti, M. Rongioletti, L. Rossi, C.M.L. Machado, G. Cerchiaro, J. Inorg. Biochem. 2022, 226, 111634.
-
[53]
M. Vetchý, Ceska. Slov. Farm. 2018, 67(4), 143.M. Vetchý, Ceska. Slov. Farm. 2018, 67(4), 143.
-
[54]
R.A. Festa, D.J. Thiele, Curr. Biol. 2011, 21(21), R877.R.A. Festa, D.J. Thiele, Curr. Biol. 2011, 21(21), R877.
-
[55]
T. Tsang, C.I. Davis, D.C. Brady, Curr. Biol. 2021, 31(9), R421.T. Tsang, C.I. Davis, D.C. Brady, Curr. Biol. 2021, 31(9), R421.
-
[56]
H. Shi, Y. Jiang, Y. Yang, Y.G. Peng, C.H. Li, Biometals 2021, 34(1), 3.H. Shi, Y. Jiang, Y. Yang, Y.G. Peng, C.H. Li, Biometals 2021, 34(1), 3.
-
[57]
A. Chambers, D. Krewski, N. Birkett, L. Plunkett, R. Hertzberg, R. Danzeisen, P.J. Aggett, B. Thomas, S.S. Baker, M. Dourson, et al., Slob. W. J. Toxicol. Environ. Health B Crit. Rev. 2010, 13(7/8), 546.A. Chambers, D. Krewski, N. Birkett, L. Plunkett, R. Hertzberg, R. Danzeisen, P.J. Aggett, B. Thomas, S.S. Baker, M. Dourson, et al., Slob. W. J. Toxicol. Environ. Health B Crit. Rev. 2010, 13(7/8), 546.
-
[58]
J.L. Burkhead, K.A.G. Reynolds, S.E. Abdel-Ghany, C.M. Cohu, M.N. Pilon, Phytol. 2009, 182(4), 799.J.L. Burkhead, K.A.G. Reynolds, S.E. Abdel-Ghany, C.M. Cohu, M.N. Pilon, Phytol. 2009, 182(4), 799.
-
[59]
F.P. Guengerich, J. Biol. Chem. 2018, 293(13), 4603.F.P. Guengerich, J. Biol. Chem. 2018, 293(13), 4603.
-
[60]
K.A. Jett, S.C. Leary, J. Biol. Chem. 2018, 293(13), 4644.K.A. Jett, S.C. Leary, J. Biol. Chem. 2018, 293(13), 4644.
-
[61]
N.G. Robinett, R.L. Peterson, V.C. Culotta, J. Biol. Chem. 2018, 293(13), 4636.N.G. Robinett, R.L. Peterson, V.C. Culotta, J. Biol. Chem. 2018, 293(13), 4636.
-
[62]
S.S. Pereival, P. Soc. Exp. Biol. Med. 1992, 200(4), 522.S.S. Pereival, P. Soc. Exp. Biol. Med. 1992, 200(4), 522.
-
[63]
M. Paquet, T. Fujii, F. Moynier, J. Trace. Elem.. Med. Biol. 2022, 71, 126967.M. Paquet, T. Fujii, F. Moynier, J. Trace. Elem.. Med. Biol. 2022, 71, 126967.
-
[64]
K.Y. Wu, B. Cao, W.B. Chen, W. Wu, S. Zhao, X.Y. Min, J. Yang, J. Han, X. Dong, N. Wang, et al., Kidney Int. 2024, 105(3), 524.K.Y. Wu, B. Cao, W.B. Chen, W. Wu, S. Zhao, X.Y. Min, J. Yang, J. Han, X. Dong, N. Wang, et al., Kidney Int. 2024, 105(3), 524.
-
[65]
L.Y.Z. Xie, J. Gong, Z.Q. He, X. Luo, S.Q. Yin, X.Z. Qian, G.Q. Lin, Y. Li, N.L.F. Ying, Small, 2025, 21(12), 2412174.L.Y.Z. Xie, J. Gong, Z.Q. He, X. Luo, S.Q. Yin, X.Z. Qian, G.Q. Lin, Y. Li, N.L.F. Ying, Small, 2025, 21(12), 2412174.
-
[66]
向思佳, 刘扬中. 大学化学, 2022, 37(3), 2107128.
-
[67]
K. Grungreiff, D. Reinhold, H. Wedemeyer, Ann. Hepatol. 2016, 15(1), 7.K. Grungreiff, D. Reinhold, H. Wedemeyer, Ann. Hepatol. 2016, 15(1), 7.
-
[68]
X.Q. Zhang, Y.F. Gong, C. Sun, J. Funct. Foods 2025, 127, 106784.X.Q. Zhang, Y.F. Gong, C. Sun, J. Funct. Foods 2025, 127, 106784.
-
[69]
Y. Himoto, T. Masaki, Nutrients 2018, 10(1), 88.Y. Himoto, T. Masaki, Nutrients 2018, 10(1), 88.
-
[70]
Y. Wan, B.K. Zhang, Biomolecules 2022, 12(12), 900.Y. Wan, B.K. Zhang, Biomolecules 2022, 12(12), 900.
-
[71]
W. Zhong, C.J. McClain, M. Cave, Y.J. Kang, Z. Zhou, Liver Physiol. 2010, 298(5), G625.W. Zhong, C.J. McClain, M. Cave, Y.J. Kang, Z. Zhou, Liver Physiol. 2010, 298(5), G625.
-
[72]
G.C. Sturniolo, W. Fries, E. Mazzon, V. Di Leo, M. Barollo, R. D’Incà, J. Lab. Clin. Med. 2002, 139(5), 311.G.C. Sturniolo, W. Fries, E. Mazzon, V. Di Leo, M. Barollo, R. D’Incà, J. Lab. Clin. Med. 2002, 139(5), 311.
-
[73]
T. Kambe, T. Tsuji, A. Hashimoto, N. Itsumura, C. Creminon, N. Coudray, V. Forge, M.S. Montesinos, I. Dhennin-Duthille, T. Hara, M. Seve, Physiol. Rev. 2015, 95(3), 749.T. Kambe, T. Tsuji, A. Hashimoto, N. Itsumura, C. Creminon, N. Coudray, V. Forge, M.S. Montesinos, I. Dhennin-Duthille, T. Hara, M. Seve, Physiol. Rev. 2015, 95(3), 749.
-
[74]
T. Hara, T.A. Takeda, T. Takagishi, K. Fukue, T. Kambe, T. Fukada, K. Nishida, Z. Bian, H. Ishizaki, S. Imanishi, et al., J. Physiol. Sci. 2017, 67(2), 283.T. Hara, T.A. Takeda, T. Takagishi, K. Fukue, T. Kambe, T. Fukada, K. Nishida, Z. Bian, H. Ishizaki, S. Imanishi, et al., J. Physiol. Sci. 2017, 67(2), 283.
-
[75]
L. Huang, S. Tepaamorndech, Mol. Aspects. Med. 2013, 34(2-3), 548.L. Huang, S. Tepaamorndech, Mol. Aspects. Med. 2013, 34(2-3), 548.
-
[76]
J. Jeong, D. Eide, J. Mol. Aspects. Med. 2013, 34(2-3), 612.J. Jeong, D. Eide, J. Mol. Aspects. Med. 2013, 34(2-3), 612.
-
[77]
M.H. Kim, T.B. Aydemir, J. Kim, H.S. Kim, A. Son, H.L. Noh, S.H. Chang, G. Kim, R.J. Cousins, Proc. Natl. Acad. Sci. U. S. A. 2017, 114(29), E5805.M.H. Kim, T.B. Aydemir, J. Kim, H.S. Kim, A. Son, H.L. Noh, S.H. Chang, G. Kim, R.J. Cousins, Proc. Natl. Acad. Sci. U. S. A. 2017, 114(29), E5805.
-
[78]
C. Franco, L.M.T. Canzoniero, Front. Endocrinol. (Lausanne) 2023, 14, 1273177.C. Franco, L.M.T. Canzoniero, Front. Endocrinol. (Lausanne) 2023, 14, 1273177.
-
[79]
M.P. Zago, P.I. Oteiza, Free. Rad. Biol. Med. 2001, 31(2), 266.M.P. Zago, P.I. Oteiza, Free. Rad. Biol. Med. 2001, 31(2), 266.
-
[80]
H. Shen, R. MacDonald, D. Bruemmer, A.R. Barakat, T. W. Gettys, R.B. Andrew, W.G. Thomas, J. Nutr. 2007, 137(11), 2339.H. Shen, R. MacDonald, D. Bruemmer, A.R. Barakat, T. W. Gettys, R.B. Andrew, W.G. Thomas, J. Nutr. 2007, 137(11), 2339.
-
[81]
Y. Murakami, T. Koyabu, A. Kawashima, A. Yamaguchi, S. Yamaguchi, M. Kakei, T. Yoshioka, J. Nutr. Sci. Vitaminol. 2007, 53(3), 213.Y. Murakami, T. Koyabu, A. Kawashima, A. Yamaguchi, S. Yamaguchi, M. Kakei, T. Yoshioka, J. Nutr. Sci. Vitaminol. 2007, 53(3), 213.
-
[82]
Y. Qi, Z. Zhang, S. Li, J. Zhou, Q. Zhang, M. Wang, Y. Zhang, G. Zhou, C. Wang, T. Wang, Z. Zhou, J. Agric. Food Chem. 2020, 68(18), 5189.Y. Qi, Z. Zhang, S. Li, J. Zhou, Q. Zhang, M. Wang, Y. Zhang, G. Zhou, C. Wang, T. Wang, Z. Zhou, J. Agric. Food Chem. 2020, 68(18), 5189.
-
[83]
T. Nishiguchi, Y. Yoshikawa, H. Yasui, Int. J. Mol. Sci. 2017, 18(12), 18124667.T. Nishiguchi, Y. Yoshikawa, H. Yasui, Int. J. Mol. Sci. 2017, 18(12), 18124667.
-
[84]
T. Himoto, T. Masaki, Nutrients, 2018, 10(1), 10010088.T. Himoto, T. Masaki, Nutrients, 2018, 10(1), 10010088.
-
[85]
M.H. Kim, T.B. Aydemir, J. Kim, H.S. Kim, A. Son, H.L. Noh, S.H. Chang, G. Kim, R.J. Cousins, Proc. Natl. Acad. Sci. U. S. A. 2017, 114(29), e5805.M.H. Kim, T.B. Aydemir, J. Kim, H.S. Kim, A. Son, H.L. Noh, S.H. Chang, G. Kim, R.J. Cousins, Proc. Natl. Acad. Sci. U. S. A. 2017, 114(29), e5805.
-
[86]
E. Mocchegiani, J. Romeo, M. Malavolta, Age (Dordr). 2013, 35(3), 839.E. Mocchegiani, J. Romeo, M. Malavolta, Age (Dordr). 2013, 35(3), 839.
-
[87]
C.L. Keen, M.E. Gershwin, Ann. Rev. Nutr. 1990, 10, 415.C.L. Keen, M.E. Gershwin, Ann. Rev. Nutr. 1990, 10, 415.
-
[88]
E.R. Broun, A. Greist, G. Tricot, R. Hoffman, Jama 1990, 264(11), 1441.E.R. Broun, A. Greist, G. Tricot, R. Hoffman, Jama 1990, 264(11), 1441.
-
[89]
A. Hosui, E. Kimura, S. Abe, T. Yamamoto, Y. Yasui, Y. Suehiro, K. Murakami, N. Hiramatsu, T. Kanto, M. Shimizu, et al., Nutrients 2018, 10(12), 1955.A. Hosui, E. Kimura, S. Abe, T. Yamamoto, Y. Yasui, Y. Suehiro, K. Murakami, N. Hiramatsu, T. Kanto, M. Shimizu, et al., Nutrients 2018, 10(12), 1955.
-
[90]
J.P.C. Alves-Rafaella, C. Jadan-Piedra, Environ. Rev. 2021, 30(1), 1139.J.P.C. Alves-Rafaella, C. Jadan-Piedra, Environ. Rev. 2021, 30(1), 1139.
-
[91]
G.F. Nordberg, A. Bernard, G.L. Diamond, J.H. Duffus, H.P. Illing, M. Nordberg, A.J. Ingvar, S. TaiyiSkerfving, D.M. SalomonTempleton, S. Valkonen, et al., Pure Appl. Chem. 2018. 90(4), 755.G.F. Nordberg, A. Bernard, G.L. Diamond, J.H. Duffus, H.P. Illing, M. Nordberg, A.J. Ingvar, S. TaiyiSkerfving, D.M. SalomonTempleton, S. Valkonen, et al., Pure Appl. Chem. 2018. 90(4), 755.
-
[92]
B.A. Fowler, Toxicol. Appl. Pharm. 2009, 238(3), 294.B.A. Fowler, Toxicol. Appl. Pharm. 2009, 238(3), 294.
-
[93]
H. Zhang, M. Reynolds, Sci. Total. Environ. 2019, 678, 761.H. Zhang, M. Reynolds, Sci. Total. Environ. 2019, 678, 761.
-
[94]
S. Satarug, G.C. Gobe, D.A. Vesey, Toxics 2022, 10(8), 472.S. Satarug, G.C. Gobe, D.A. Vesey, Toxics 2022, 10(8), 472.
-
[95]
A. Buha, V. Matovic, B. Antonijevic, D. Đukić-Ćosić, E. Miljaković, Z. Bulat, D. Wallace, Int. J. Mol. Sci. 2018, 19(5), 1501.A. Buha, V. Matovic, B. Antonijevic, D. Đukić-Ćosić, E. Miljaković, Z. Bulat, D. Wallace, Int. J. Mol. Sci. 2018, 19(5), 1501.
-
[96]
X. Chen, Y. Xu, Z. Cheng, H. Cai, Z. Li, G. Jia, G. Liu, G. Chen, Int. J. Mol. Med. 2018, 41(5), 2359.X. Chen, Y. Xu, Z. Cheng, H. Cai, Z. Li, G. Jia, G. Liu, G. Chen, Int. J. Mol. Med. 2018, 41(5), 2359.
-
[97]
V.R. Djordjevic, D.R. Wallace, A. Schweitzer, D. Boricic, G. Dmitrasinovic, I. Djan, I. Baralic, Environ. Int. 2019, 128, 353.V.R. Djordjevic, D.R. Wallace, A. Schweitzer, D. Boricic, G. Dmitrasinovic, I. Djan, I. Baralic, Environ. Int. 2019, 128, 353.
-
[98]
Y. Yuan, Y. Zhang, S. Zhao, J. Chen, J. Yang, T. Wang, H. Zou, Y. Wang, J. Gu, X. Liu, et al., Sci. Rep. 2018, 8, 8837.Y. Yuan, Y. Zhang, S. Zhao, J. Chen, J. Yang, T. Wang, H. Zou, Y. Wang, J. Gu, X. Liu, et al., Sci. Rep. 2018, 8, 8837.
-
[99]
J. Gu, Y. Wang, Y. Liu, M. M. Shi, L. Yin, Y. Hou, Y.G. Zhou, C.K.C. Wong, D.F. Chen, Z.L. Guo, Toxicol. Sci. 2019, 170(1), 109.J. Gu, Y. Wang, Y. Liu, M. M. Shi, L. Yin, Y. Hou, Y.G. Zhou, C.K.C. Wong, D.F. Chen, Z.L. Guo, Toxicol. Sci. 2019, 170(1), 109.
-
[100]
X.H. Zhou, W.M. Hao, H.F. Shi, Q.G. Xu, Oncol. Res. Treat. 2015, 38(6), 311.X.H. Zhou, W.M. Hao, H.F. Shi, Q.G. Xu, Oncol. Res. Treat. 2015, 38(6), 311.
-
[101]
K.M. Chung, E.J. Jeong, H. Park, H.K. An, S.W. Yu, Front Cell Neurosci. 2016, 10(1), 116.K.M. Chung, E.J. Jeong, H. Park, H.K. An, S.W. Yu, Front Cell Neurosci. 2016, 10(1), 116.
-
[102]
V. Matovic, A. Buha, D. Ðuki-Cosić, B. Zorica, Food Chem. Toxicol. 2015, 78, 130.V. Matovic, A. Buha, D. Ðuki-Cosić, B. Zorica, Food Chem. Toxicol. 2015, 78, 130.
-
[103]
H. Yang, Y. Shu, Int. J. Mol. Sci. 2015, 16(1), 1484.H. Yang, Y. Shu, Int. J. Mol. Sci. 2015, 16(1), 1484.
-
[104]
Z. Bulat, D. Duki-Cosić, B. Antonijević, A. Buha, P. Bulat, Z. Pavlović, Arh. Hig. Rada. Toksikol. 2017, 68(1), 38.Z. Bulat, D. Duki-Cosić, B. Antonijević, A. Buha, P. Bulat, Z. Pavlović, Arh. Hig. Rada. Toksikol. 2017, 68(1), 38.
-
[105]
V. Matović, Z.P. Bulat, D. Djukić-Cosić, D. Soldatović, Res. M. 2010, 23(1), 19.V. Matović, Z.P. Bulat, D. Djukić-Cosić, D. Soldatović, Res. M. 2010, 23(1), 19.
-
[106]
(日)石牟礼道子. 苦海净土——我们的水俣. 东京: 株式会社讲谈社, 1969.
-
[107]
J.M. Hightower, Diagnosis Mercury: Money, Politics & Poison. Island Press/Shearwater Books: Washington, D.C., USA, 2009.J.M. Hightower, Diagnosis Mercury: Money, Politics & Poison. Island Press/Shearwater Books: Washington, D.C., USA, 2009.
-
[108]
F. Zahir, S.J. Rizwi, S.K. Haq, R.H. Khan, Environ. Toxicol. Phar. 2005, 20(2), 351.F. Zahir, S.J. Rizwi, S.K. Haq, R.H. Khan, Environ. Toxicol. Phar. 2005, 20(2), 351.
-
[109]
World Health Organization. 10 Chemicals of Major Public Health Concern. [2025-07-02]. https://www.who.int/news-room/photo-story/detail/10-chemicals-of-public-health-concern?utm_sourceWorld Health Organization. 10 Chemicals of Major Public Health Concern. [2025-07-02]. https://www.who.int/news-room/photo-story/detail/10-chemicals-of-public-health-concern?utm_source
-
[110]
L.X. Yang, Y.Y. Zhang, F.F. Wang, Z.D. Luo, S.J. Guo, U. Strähle, Chemosphere 2020, 245, 125586.L.X. Yang, Y.Y. Zhang, F.F. Wang, Z.D. Luo, S.J. Guo, U. Strähle, Chemosphere 2020, 245, 125586.
-
[111]
A.C. Young, P.M. Wax, S.Y. Feng, K.C. Kleinschmidt, J.E. Ordonez. J. Med. Toxicol. 2020, 16(4), 470.A.C. Young, P.M. Wax, S.Y. Feng, K.C. Kleinschmidt, J.E. Ordonez. J. Med. Toxicol. 2020, 16(4), 470.
-
[112]
P. Triunfante, M.E. Soares, A. Santos, S. Tavares, H. Carmo, M. Bastos, Forensic. Sci. Int. 2009, 184(1-3), e1.P. Triunfante, M.E. Soares, A. Santos, S. Tavares, H. Carmo, M. Bastos, Forensic. Sci. Int. 2009, 184(1-3), e1.
-
[113]
J.J. Strain, T.M. Love, A.J. Yeates, D. Weller, M.S. Mulhern, E.M. McSorley, S.W. Thurston, G.E. Watson, D. Mruzek, K. Broberg, et al., Am. J. Clin. Nutr. 2021. 113(2), 304.J.J. Strain, T.M. Love, A.J. Yeates, D. Weller, M.S. Mulhern, E.M. McSorley, S.W. Thurston, G.E. Watson, D. Mruzek, K. Broberg, et al., Am. J. Clin. Nutr. 2021. 113(2), 304.
-
[114]
N. Basu, A. Bastiansz, J.G. D’orea, M. Fujimura, M. Horvat, E. Shroff, P. Weihe, I. Zastenskaya, Ambio 2023, 52(5), 877.N. Basu, A. Bastiansz, J.G. D’orea, M. Fujimura, M. Horvat, E. Shroff, P. Weihe, I. Zastenskaya, Ambio 2023, 52(5), 877.
-
[115]
B.L. Kang, J.H. Wang, S.J. Guo, L.X. Yang, Sci. Total Environ. 2024, 943(15), 173577.B.L. Kang, J.H. Wang, S.J. Guo, L.X. Yang, Sci. Total Environ. 2024, 943(15), 173577.
-
[116]
B. Han, D. García-Mendoza, H. van den Berg, N.W. van den Brink, Environ. Toxicol. Chem. 2021, 40(10), 2813.B. Han, D. García-Mendoza, H. van den Berg, N.W. van den Brink, Environ. Toxicol. Chem. 2021, 40(10), 2813.
-
[117]
K. Berg, P. Puntervoll, S. Valdersnes, A. Goksøyr, Aquat. Toxicol. 2010, 100(1), 51.K. Berg, P. Puntervoll, S. Valdersnes, A. Goksøyr, Aquat. Toxicol. 2010, 100(1), 51.
-
[118]
R.H. Wang, S.J. Guo, B.L. Kang, L.X. Yang, Chemosphere 2023, 313, 137380.R.H. Wang, S.J. Guo, B.L. Kang, L.X. Yang, Chemosphere 2023, 313, 137380.
-
[119]
P. Pierozan, H. Biasibetti, F. Schmitz, H. Ávila, M.M. Parisi, F. Barbe-Tuana, A.T.S. Wyse, Mol. Neurobiol. 2017, 54(8), 5752.P. Pierozan, H. Biasibetti, F. Schmitz, H. Ávila, M.M. Parisi, F. Barbe-Tuana, A.T.S. Wyse, Mol. Neurobiol. 2017, 54(8), 5752.
-
[120]
Agency for Toxic Substances and Disease Registry (ATSDR), Toxicological Profile for Mercury, U.S. Department of Health and Human Services, Public Health Service: Atlanta, GA, USA, 1999, pp. 178-180.Agency for Toxic Substances and Disease Registry (ATSDR), Toxicological Profile for Mercury, U.S. Department of Health and Human Services, Public Health Service: Atlanta, GA, USA, 1999, pp. 178-180.
-
[121]
C.C. Bridges, R.K. Zalups, J. Toxico.l Environ. Heal. Part B 2017, 20(2), 55.C.C. Bridges, R.K. Zalups, J. Toxico.l Environ. Heal. Part B 2017, 20(2), 55.
-
[122]
P. Rojas-Franco, M. Franco-Colín, A.P. Torres-Manzo, V. Blas-Valdivia, M.R. Thompson-Bonilla, S. Kandir, E. Cano-Europa, Ren. Fail. 2019, 41(1), 1001.P. Rojas-Franco, M. Franco-Colín, A.P. Torres-Manzo, V. Blas-Valdivia, M.R. Thompson-Bonilla, S. Kandir, E. Cano-Europa, Ren. Fail. 2019, 41(1), 1001.
-
[123]
M. Mishra, L. Nichols, A.A. Dave, E.H. Pittman, J.P. Cheek, A.J.V. Caroland, P. Lotwala, J. Drummond, C.C. Bridges, Int. J. Mol. Sci. 2022, 23(19), 11105.M. Mishra, L. Nichols, A.A. Dave, E.H. Pittman, J.P. Cheek, A.J.V. Caroland, P. Lotwala, J. Drummond, C.C. Bridges, Int. J. Mol. Sci. 2022, 23(19), 11105.
-
[124]
V.J.V. dos Anjos, V.B. Marques, L.V. Vieira, R.de O. Crajoinas, M.H.M. Shimizu, A.C. Seguro, M.T.W. D. Carneiro, A.C.C. Girardi, D.V. Vassallo, L. dos Santos, Toxicol. Lett. 2021, 341, 23.V.J.V. dos Anjos, V.B. Marques, L.V. Vieira, R.de O. Crajoinas, M.H.M. Shimizu, A.C. Seguro, M.T.W. D. Carneiro, A.C.C. Girardi, D.V. Vassallo, L. dos Santos, Toxicol. Lett. 2021, 341, 23.
-
[125]
S.W. Tan, J.C. Meiller, K.R. Mahaffey, Crit. Rev. Toxicol. 2009, 39(3), 228.S.W. Tan, J.C. Meiller, K.R. Mahaffey, Crit. Rev. Toxicol. 2009, 39(3), 228.
-
[126]
B.C. Hopkins, J.D. Willson, W.A. Hopkins, Enviro. Sci. Technol. 2013. 47(5), 2416.B.C. Hopkins, J.D. Willson, W.A. Hopkins, Enviro. Sci. Technol. 2013. 47(5), 2416.
-
[127]
M.A. da Cunha, M.F.H. Carneiro, D. Grotto, J.A. Adeyemi, F.J. Barbosa, J. Toxicol. Environ. Heal. Part B. Crit. Rev. 2018, 21(2), 61.M.A. da Cunha, M.F.H. Carneiro, D. Grotto, J.A. Adeyemi, F.J. Barbosa, J. Toxicol. Environ. Heal. Part B. Crit. Rev. 2018, 21(2), 61.
-
[128]
T. Takahashi, T. Shimohata, Int. J. Mol. Sci. 2019, 20(10), 2435.T. Takahashi, T. Shimohata, Int. J. Mol. Sci. 2019, 20(10), 2435.
-
[129]
R.P. Simões, P.B.A. Fardin, M.R. Simões, D.V. Vassallo, A.S. Padilha, Biol. Trace. Elem. Res. 2020, 196(2), 565.R.P. Simões, P.B.A. Fardin, M.R. Simões, D.V. Vassallo, A.S. Padilha, Biol. Trace. Elem. Res. 2020, 196(2), 565.
-
[130]
I. Falnoga, M. Tušek-Znidarič, M. Horvat, P. Stegnar, Environ Res 2000, 84, 211.I. Falnoga, M. Tušek-Znidarič, M. Horvat, P. Stegnar, Environ Res 2000, 84, 211.
-
[131]
D.G. Ellingsen, J. Efskind, E. Haug, Y. Thomassen, I. Martinsen, P.I. Gaarder, J. Appl. Toxicol. 2000, 20(6), 483.D.G. Ellingsen, J. Efskind, E. Haug, Y. Thomassen, I. Martinsen, P.I. Gaarder, J. Appl. Toxicol. 2000, 20(6), 483.
-
[132]
Y. Shao, L. Wang, P. Langlois, K. Dong, J. Zhang, J. Luo, L. Liu, Y. Zhang, H. Wang, Z. Luo, Toxicol. Vitro. 2019, 57, 96.Y. Shao, L. Wang, P. Langlois, K. Dong, J. Zhang, J. Luo, L. Liu, Y. Zhang, H. Wang, Z. Luo, Toxicol. Vitro. 2019, 57, 96.
-
[133]
S.W. Caito, J. Newell-Caito, M. Martell, N. Crawford, M. Aschner, Toxicol. Sci. 2020, 174(1), 112.S.W. Caito, J. Newell-Caito, M. Martell, N. Crawford, M. Aschner, Toxicol. Sci. 2020, 174(1), 112.
-
[134]
B. Ferrer, L. Prince, A.A. Tinkov, A. Santamaria, M. Farina, J.B. Rocha, A.B. Bowman, M. Aschner, Food Chem. Toxicol. 2021, 147, 111924.B. Ferrer, L. Prince, A.A. Tinkov, A. Santamaria, M. Farina, J.B. Rocha, A.B. Bowman, M. Aschner, Food Chem. Toxicol. 2021, 147, 111924.
-
[135]
L. Schumacher, L.C. Abbott, J. Appl. Toxicol. 2017, 37(1), 4.L. Schumacher, L.C. Abbott, J. Appl. Toxicol. 2017, 37(1), 4.
-
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