Review of hemoglobin-induced myocardial lesions

Kenneth Burhop1, Donovan Gordon, Timothy Estep

  • 1Baxter Healthcare Corporation, DF3-2W, One Baxter Parkway, Deerfield, Illinois 60015, USA. ken_burhop@baxter.com

Insights

Preclinical studies revealed myocardial lesions in some species after diaspirin cross-linked hemoglobin (DCLHb) administration. Nitric oxide (NO) reduction appears to be a key factor in lesion development, impacting HBOC safety evaluations.

Area of Science:

  • Biomedical research
  • Toxicology
  • Cardiovascular pathology

Background:

  • Diaspirin cross-linked hemoglobin (DCLHb) was evaluated as an oxygen therapeutic.
  • Preclinical studies identified myocardial lesions in certain animal models following DCLHb administration.

Purpose of the Study:

  • To assess the safety and efficacy of DCLHb as an oxygen therapeutic.
  • To characterize myocardial lesions observed during DCLHb preclinical evaluation.
  • To investigate the mechanism underlying DCLHb-induced myocardial lesions.

Main Methods:

  • Over 100 preclinical studies in various animal species.
  • Administration of DCLHb via top-load infusions.
  • Histopathological scoring of myocardial lesions.
  • Serum enzyme activity analysis (AST, CK, LDH).
  • ECG analysis and echocardiography.
  • Investigation of nitric oxide (NO) pathways using modified hemoglobin and L-NAME.

Main Results:

  • Myocardial lesions (degeneration/necrosis) observed in rhesus monkeys and pigs, but not dogs, sheep, or rats.
  • Lesions primarily affected the left ventricle, with minimal impact on overall myocardium (<3%).
  • Elevated serum enzymes (AST, CK, LDH) without myocardial-specific isoenzyme increases; no functional cardiac impairment.
  • Reduced lesion incidence with polymerized DCLHb.
  • Significant decrease in lesions with hemoglobin solutions having reduced NO reaction rates; L-NAME induced similar lesions.

Conclusions:

  • Myocardial lesions are a significant histopathological finding in DCLHb preclinical development.
  • Reduction in normal nitric oxide (NO) levels is implicated in the mechanism of lesion formation.
  • These findings are crucial for the preclinical testing and development of hemoglobin-based oxygen carriers (HBOCs).

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