Citation: Xinqi Zhan,  Zhaohui Zhou. Chemical Mechanism of Nephrogenic Systemic Fibrosis and Its Inhibition with Double Chelation[J]. University Chemistry, ;2023, 38(12): 86-90. doi: 10.3866/PKU.DXHX202209029 shu

Chemical Mechanism of Nephrogenic Systemic Fibrosis and Its Inhibition with Double Chelation

  • Corresponding author: Xinqi Zhan,  Zhaohui Zhou, 
  • Received Date: 12 September 2022

  • A small proportion of nephropathy patients administered gadolinium contrast agents for nuclear magnetic resonance have been reported to develop nephrogenic systemic fibrosis (NSF). This paper introduces the mechanism of the transformation and deposition of NSF, aiming to reveal the chemical nature of the gadolinium phosphate bioparticles in nephrogenic system fibrosis. This research will provide an important theoretical basis for future studies on the occurrence, development, and formation of nephrogenic system fibrosis and the removal of sediment residues. Moreover, a new idea for introducing a biocompatible second chelating agent into the gadolinium contrast agent system has been proposed, which aims to improve the safe use of gadolinium contrast agent.
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    1. [1]

    2. [2]

    3. [3]

    4. [4]

      Carr, D. H.; Brown, J.; Bydder, G. M.; Steiner, R. E.; Weinmann, H. J.; Speck, U.; Hall, A. S. I.; Young, R. Am. J. Roentgenol. 1984, 143 (2), 215.

    5. [5]

      Weinmann, H. J.; Brasch, R. C.; Press, W. R. Am. J. Roentgenol. 1984, 142 (3), 619.

    6. [6]

    7. [7]

      Bulte, J. W. M.; Kraitchman, D. L. NMR Biomed. 2004, 17 (7), 484.

    8. [8]

      Caravan, P.; Ellison, J. J.; McMurry, T. J.; Lauffer, R. B. Chem. Rev. 1999, 99 (9), 2293.

    9. [9]

      Caravan, P. Chem. Soc. Rev. 2006, 35 (6), 512.

    10. [10]

      Cowper, S. E.; Robin, H. S.; Steinberg, S. M.; Su, L. D.; Gupta, S.; LeBoit, P. E. Lancet 2000, 356 (9234), 1000.

    11. [11]

      Cowper, S. E.; Su, L. D.; Bhawan, J.; Robin, H. S.; LeBoit, P. E. Am. J. Dermatopathol. 2001, 23 (5), 383.

    12. [12]

      Grobner, T. Nephrol. Dial. Transplant 2006, 21 (4), 1104.

    13. [13]

      Marckmann, P.; Skov, L.; Rossen, K.; Dupont, A.; Damholt, M. B.; Heaf, J.; Thomsen, H. S. J. Am. Soc. Nephrol. 2006, 17 (9), 2359.

    14. [14]

      Thomsen, H. S.; Morcos, S. K.; Dawson, P. Clin. Radiol. 2006, 61 (11), 905.

    15. [15]

      Murphy, K. J.; Brunberg, J. A.; Cohan, R. H. Am. J. Roentgenol. 1996, 167 (4), 847.

    16. [16]

      FDA drug safety communication: New warnings for using gadolinium-based contrast agents in patients with kidney dysfunction. [2023-01-06]. https://www.fda.gov/drugs/drug-safety-and-availability/fda-drug-safety-communication-new-warnings-using-gadolinium-based-contrast-agents-patients-kidney

    17. [17]

      CDC: Nephrogenic fibrosing dermopathy associated with exposure to gadolinium-containing contrast agents. [2023-01-06]. https://www.cdc.gov/mmwr/preview/mmwrhtml/mm5607a1.htm

    18. [18]

      MRI questions and answers. International Society for Magnetic Resonance in Medicine.[2023-01-06]. https://www.ismrm.org/

    19. [19]

      Wahsner, J.; Gale, E. M.; Rodriguez, R. A.; Caravan, P. Chem. Rev. 2019, 119 (2), 957.

    20. [20]

      Boyd, A. S.; Zic, J. A.; Abraham, J. L. J. Am. Acad. Dermatol. 2007, 56 (1), 27.

    21. [21]

      Boyd, A. S.; Sanyal, S.; Abraham, J. L. J. Am. Acad. Dermatol. 2010, 62 (2), 337.

    22. [22]

      Abraham, J. L.; Thakral, C.; Skov, L.; Rossen, K.; Marckmann, P. Brit. J. Dermatol. 2008, 158 (2), 273.

    23. [23]

      George, S. J.; Webb, S. M.; Abraham, J. L.; Cramer, S. P. Brit. J. Dermatol. 2010, 163 (5), 1077.

    24. [24]

      Lessing, P. A.; Erickson, A. W. J. Euro. Ceram. Soc. 2003, 23 (16), 3049.

    25. [25]

      Gao, S.; George, S.; Zhou, Z. H. Dalton Trans. 2016, 45 (12), 5388.

    26. [26]

      Chen, M. L.; Tang, X.; Lu, T. H.; Zhan, X. Q.; Zhou, Z. H. J. Coord. Chem. 2020, 72 (9), 1547.

    27. [27]

      Gao, S.; Chen, M. L.; Zhou, Z. H. Dalton Trans. 2014, 43 (2), 639.

    28. [28]

      Scott, L. J. Clin. Drug Invest. 2018, 38 (9), 773.

    29. [29]

      Ponrartana, S.; Moore, M. M.; Chan, S. S.; Victoria, T.; Dillman, J. R.; Chavhan, G. B. Pediatr. Radiol. 2021, 51 (5), 736.

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