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Research Article

A novel contrast-induced acute kidney injury mouse model based on low-osmolar contrast medium

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Pages 1346-1356 | Received 17 Jan 2022, Accepted 26 Jul 2022, Published online: 08 Aug 2022

References

  • Andreucci M, Solomon R, Tasanarong A. Side effects of radiographic contrast media: pathogenesis, risk factors, and prevention. Biomed Res Int. 2014;2014:741018.
  • Katzberg RW, Newhouse JH. Intravenous contrast medium-induced nephrotoxicity: is the medical risk really as great as we have come to believe? Radiology. 2010;256(1):21–28.
  • Seeliger E, Sendeski M, Rihal CS, et al. Contrast-induced kidney injury: mechanisms, risk factors, and prevention. Eur Heart J. 2012;33(16):2007–2015.
  • Mehran R, Dangas GD, Weisbord SD. Contrast-associated acute kidney injury. N Engl J Med. 2019;380(22):2146–2155.
  • Azzalini L, Kalra S. Contrast-induced acute kidney injury-definitions, epidemiology, and implications. Interv Cardiol Clin. 2020;9(3):299–309.
  • Chandiramani R, Cao D, Nicolas J, et al. Contrast-induced acute kidney injury. Cardiovasc Interv Ther. 2020;35(3):209–217.
  • McCullough PA, Choi JP, Feghali GA, et al. Contrast-induced acute kidney injury. J Am Coll Cardiol. 2016;68(13):1465–1473.
  • Fähling M, Seeliger E, Patzak A, et al. Understanding and preventing contrast-induced acute kidney injury. Nat Rev Nephrol. 2017;13(3):169–180.
  • Hoste EAJ, Kellum JA, Selby NM, et al. Global epidemiology and outcomes of acute kidney injury. Nat Rev Nephrol. 2018;14(10):607–625.
  • Pistolesi V, Regolisti G, Morabito S, et al. Contrast medium induced acute kidney injury: a narrative review. J Nephrol. 2018;31(6):797–812.
  • Hossain MA, Costanzo E, Cosentino J, et al. Contrast-induced nephropathy: pathophysiology, risk factors, and prevention. Saudi J Kidney Dis Transpl. 2018;29(1):1–9.
  • Vlachopanos G, Schizas D, Hasemaki N, et al. Pathophysiology of contrast-induced acute kidney injury (CIAKI). Curr Pharm Des. 2019;25(44):4642–4647.
  • Weisbord SD. Prevention, incidence, and outcomes of contrast-induced acute kidney injury. Arch Intern Med. 2008;168(12):1325–1332.
  • Eng J, Wilson RF, Subramaniam RM, et al. Comparative effect of contrast media type on the incidence of contrast-induced nephropathy: a systematic review and meta-analysis. Ann Intern Med. 2016;164(6):417–424.
  • Lohani S, Rudnick MR. Contrast media-different types of contrast media, their history, chemical properties, and relative nephrotoxicity. Interv Cardiol Clin. 2020;9(3):279–292.
  • Ari E, Yilmaz Y, Kedrah AE, et al. Protective effect of the vasopressin agonist terlipressin in a rat model of contrast-induced nephropathy. Am J Nephrol. 2011;33(3):269–276.
  • Ozkan G, Ulusoy S, Orem A, et al. Protective effect of the grape seed proanthocyanidin extract in a rat model of contrast-induced nephropathy. Kidney Blood Press Res. 2012;35(6):445–453.
  • Wu CT, Weng TI, Chen LP, et al. Involvement of caspase-12-dependent apoptotic pathway in ionic radiocontrast urografin-induced renal tubular cell injury. Toxicol Appl Pharmacol. 2013;266(1):167–175.
  • Liu K, Zhou LY, Li DY, et al. A novel rat model of contrast-induced nephropathy based on dehydration. J Pharmacol Sci. 2019;141(1):49–55.
  • Liu T-q, Luo W-l, Tan X, et al. A novel contrast-induced acute kidney injury model based on the 5/6-nephrectomy rat and nephrotoxicological evaluation of iohexol and iodixanol in vivo. Oxid Med Cell Longev. 2014;2014:427560.
  • Sun S, Zhang T, Nie P, et al. A novel rat model of contrast-induced acute kidney injury. Int J Cardiol. 2014;172(1):e48-50–e50.
  • Ciarambino T, Para O, Giordano M. Gender in acute kidney disease: a narrative review. Clin Nephrol. 2021;95(3):123–126.
  • Kim BW, Kim HJ, Kim SH, et al. 15-Hydroxyprostaglandin dehydrogenase inhibitor prevents contrast-induced acute kidney injury. Ren Fail. 2021;43(1):168–179.
  • Kim JE, Bae SY, Ahn SY, et al. The role of nuclear factor erythroid-2-related factor 2 expression in radiocontrast-induced nephropathy. Sci Rep. 2019;9(1):2608.
  • Shen H, Holliday M, Sheikh-Hamad D, et al. Sirtuin-3 mediates sex differences in kidney ischemia-reperfusion injury. Transl Res. 2021;235:15–31.
  • Zhang C, Suo M, Liu L, et al. Melatonin alleviates Contrast-Induced acute kidney injury by activation of Sirt3. Oxid Med Cell Longev. 2021;2021:6668887. 2021:
  • Roh GU, Lee JW, Nam SB, et al. Incidence and risk factors of acute kidney injury after thoracic aortic surgery for acute dissection. Ann Thorac Surg. 2012;94(3):766–771.
  • Levi TM, Rocha MS, Almeida DN, et al. Furosemide is associated with acute kidney injury in critically ill patients. Braz J Med Biol Res. 2012;45(9):827–833.
  • Chronopoulos A, Cruz DN, Ronco C. Hospital-acquired acute kidney injury in the elderly. Nat Rev Nephrol. 2010;6(3):141–149.
  • Goodman AI, Olszanecki R, Yang LM, et al. Heme oxygenase-1 protects against radiocontrast-induced acute kidney injury by regulating anti-apoptotic proteins. Kidney Int. 2007;72(8):945–953.
  • Kodama A, Watanabe H, Tanaka R, et al. A human serum albumin-thioredoxin fusion protein prevents experimental contrast-induced nephropathy. Kidney Int. 2013;83(3):446–454.
  • Cernigliaro JG, Haley WE, Adolphson DP, et al. Contrast-induced nephropathy in outpatients with preexisting renal impairment: a comparison between intravenous iohexol and iodixanol. Clin Imaging. 2016;40(5):902–906.
  • Zheng Z, Li C, Shao G, et al. Hippo-YAP/MCP-1 mediated tubular maladaptive repair promote inflammation in renal failed recovery after ischemic AKI. Cell Death Dis. 2021;12(8):754.
  • Idée JM, Bonnemain B. Reliability of experimental models of iodinated contrast media-induced acute renal failure. From methodological considerations to pathophysiology. Invest Radiol. 1996;31(4):230–241.
  • Efrati S, Berman S, Ilgiyeav I, et al. Differential effects of N-acetylcysteine, theophylline or bicarbonate on contrast-induced rat renal vasoconstriction. Am J Nephrol. 2009;29(3):181–191.
  • Jia T, Olauson H, Lindberg K, et al. A novel model of adenine-induced tubulointerstitial nephropathy in mice. BMC Nephrol. 2013;14:116.
  • Khan A-M, Maderdrut JL, Li M, et al. Pituitary adenylate cyclase-activating polypeptide prevents contrast-induced nephropathy in a novel mouse model. Physiol Rep. 2013;1(6):e00163.
  • Arsenijevic D, Cajot J-F, Fellay B, et al. Uninephrectomy-induced lipolysis and low-grade inflammation are mimicked by unilateral renal denervation. Front Physiol. 2016;7:227.
  • Kume K, Yasuoka Y, Adachi H, et al. Impact of contrast-induced acute kidney injury on outcomes in patients with ST-segment elevation myocardial infarction undergoing primary percutaneous coronary intervention. Cardiovasc Revasc Med. 2013;14(5):253–257.
  • Fan Y, Xiao W, Lee K, et al. Inhibition of reticulon-1A-Mediated endoplasmic reticulum stress in early AKI attenuates renal fibrosis development. J Am Soc Nephrol. 2017;28(7):2007–2021.
  • Lin Q, Li S, Jiang N, et al. Inhibiting NLRP3 inflammasome attenuates apoptosis in contrast-induced acute kidney injury through the upregulation of HIF1A and BNIP3-mediated mitophagy. Autophagy. 2021;17(10):2975–2990.
  • Lin Q, Li S, Jiang N, et al. PINK1-parkin pathway of mitophagy protects against contrast-induced acute kidney injury via decreasing mitochondrial ROS and NLRP3 inflammasome activation. Redox Biol. 2019;26:101254.
  • Shen J, Wang L, Jiang N, et al. NLRP3 inflammasome mediates contrast media-induced acute kidney injury by regulating cell apoptosis. Sci Rep. 2016;6:34682.
  • Zhang Z, Shao X, Jiang N, et al. Caspase-11-mediated tubular epithelial pyroptosis underlies contrast-induced acute kidney injury. Cell Death Dis. 2018;9(10):983.
  • Azzalini L, Spagnoli V, Ly HQ. Contrast-induced nephropathy: from pathophysiology to preventive strategies. Can J Cardiol. 2016;32(2):247–255.