4.8 Article

The protective role of macrophage migration inhibitory factor in acute kidney injury after cardiac surgery

期刊

SCIENCE TRANSLATIONAL MEDICINE
卷 10, 期 441, 页码 -

出版社

AMER ASSOC ADVANCEMENT SCIENCE
DOI: 10.1126/scitranslmed.aan4886

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资金

  1. Deutsche Forschungsgemeinschaft [STO 1099/-2, BO 3755/3-1, BO 3755/6-1, BE 1977/9-1, SFB1123/A03, FA 1048/2-1, SFB TRR 57, SFB TRR 219]
  2. Interdisciplinary Centre for Clinical Research (IZKF) at the RWTH Aachen [SP5, K7-3]
  3. German Center for Cardiovascular Diseases (DZHK)
  4. German Ministry of Education and Research (BMBF Consortium STOP-FSGS) [01GM1518A]
  5. NIH [AR049610, AR050498]
  6. Department of Defense [DM160460]
  7. German Research Foundation
  8. Else-Kroner Fresenius Stiftung
  9. Fresenius
  10. Astute Medical
  11. Astellas

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Acute kidney injury (AKI) represents the most frequent complication after cardiac surgery. Macrophage migration inhibitory factor (MIF) is a stress-regulating cytokine that was shown to protect the heart from myocardial ischemiareperfusion injury, but its role in the pathogenesis of AKI remains unknown. In an observational study, serum and urinary MIF was quantified in 60 patients scheduled for elective conventional cardiac surgery with the use of cardiopulmonary bypass. Cardiac surgery triggered an increase in MIF serum concentrations, and patients with high circulating MIF (>median) 12 hours after surgery had a significantly reduced risk of developing AKI (relative risk reduction, 72.7%; 95% confidence interval, 12 to 91.5%; P = 0.03). Experimental AKI was induced in wild-type and Mir(-/-) mice by 30 min of ischemia followed by 6 or 24 hours of reperfusion, or by rhabdomyolysis. Mf-deficient mice exhibited increased tubular cell injury, increased regulated cell death (necroptosis and ferroptosis), and enhanced oxidative stress. Therapeutic administration of recombinant MIF after ischemia-reperfusion in mice ameliorated AKI. In vitro treatment of tubular epithelial cells with recombinant MIF reduced cell death and oxidative stress as measured by glutathione and thiobarbituric acid reactive substances in the setting of hypoxia. Our data provide evidence of a renoprotective role of MIF in experimental ischemia-reperfusion injury by protecting renal tubular epithelial cells, consistent with our observation that high MIF in cardiac surgery patients is associated with a reduced incidence of AKI.

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