Myocardial release of non-transferrin-bound iron during cardio-pulmonary bypass surgery

C M Ambrus1, T Z Lajos, I Stadler

  • 1Department of Pediatrics, State University of New York at Buffalo, School of Medicine and Biomedical Sciences, Buffalo, NY 14203, USA. cambrus@ix.netcom.com

Journal of Medicine
|February 23, 2007
PubMed

Insights

During coronary artery bypass grafting (CABG), increased non-transferrin-bound-iron (NTBI) released into the blood may worsen heart damage. This iron catalyst contributes to free radical formation, elevating cardiac enzyme levels post-surgery.

Area of Science:

  • Cardiovascular Surgery
  • Biochemistry
  • Free Radical Biology

Background:

  • Reperfusion injury, a consequence of restoring blood flow after ischemia, can cause significant myocardial damage.
  • Oxygen-derived free radicals, implicated in reperfusion injury, are generated by substances released from hypoxic tissues.
  • The role of iron in exacerbating reperfusion injury is suggested by the protective effects of iron chelators like desferrioxamine.

Purpose of the Study:

  • To investigate the correlation between non-transferrin-bound-iron (NTBI) levels during coronary artery bypass grafting (CABG) and myocardial damage.
  • To determine if NTBI released during CABG surgery acts as a catalyst for free radical formation, contributing to reperfusion injury.
  • To explore the relationship between NTBI accumulation, ischemic time, and myocardial damage during cardiopulmonary bypass.

Main Methods:

  • Collection of coronary sinus (influx) and aortic vent (efflux) blood samples from 13 patients undergoing redo CABG.
  • Analysis of collected specimens using sieving chromatography, atomic absorption spectrometry (AAS) for total iron and NTBI.
  • Correlation analysis between measured NTBI levels, duration of myocardial ischemia, and post-operative serum CK-MB concentrations.

Main Results:

  • A statistically significant increase in NTBI was observed in both influx (p = 0.002) and efflux (p = 0.023) samples after each distal coronary anastomosis.
  • The total amount of NTBI collected during CABG was directly proportional to the increase in serum CK-MB levels on the day of and the day after surgery.
  • NTBI accumulation in bypass fluid during CABG may catalyze free radical generation upon restoration of body temperature, exacerbating myocardial damage.

Conclusions:

  • Non-transferrin-bound-iron (NTBI) is released during coronary artery bypass grafting (CABG) surgery.
  • Elevated NTBI levels correlate with increased myocardial damage, indicated by post-surgical CK-MB concentrations.
  • Further research is underway to develop methods for NTBI removal during cardiac surgery to mitigate reperfusion injury.

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