Are cefuroxime and vancomycin really safe on the corneal endothelial cells?

Tök Y Ozlem1, Demir M Necati, Yilmaz M Fatma

  • 1Department of Ophthalmology, Ankara Training and Research Hospital, Ankara, Turkey.

Abstract

Insights

Intracameral cefuroxime, unlike vancomycin, significantly increased oxidative stress in rabbit corneas, indicating potential endothelial toxicity. These findings suggest careful preparation of antibiotics to mitigate risks during eye surgery.

Area of Science:

  • Ophthalmology
  • Biochemistry
  • Toxicology

Background:

  • The oxidant/antioxidant balance in corneal tissue is crucial for maintaining ocular health.
  • Intracameral antibiotics are frequently used in anterior segment surgeries, necessitating an understanding of their potential toxic effects on corneal endothelium.

Purpose of the Study:

  • To evaluate the biochemical alterations in the oxidant/antioxidant balance within corneal tissue.
  • To compare the relative toxicities of intracameral cefuroxime and vancomycin on corneal endothelium.

Main Methods:

  • New Zealand rabbits were divided into cefuroxime, vancomycin, and control groups (n=10 each).
  • Corneal thickness and clarity were assessed post-injection.
  • Malondialdehyde (MDA) and total thiol (SH) levels were measured in corneal tissues to assess oxidative stress.

Main Results:

  • No significant corneal thickening, edema, or anterior chamber reaction was observed with either antibiotic.
  • Cefuroxime significantly increased MDA levels (p<0.001) and decreased SH levels (p=0.001) in corneal tissue.
  • Vancomycin did not induce statistically significant changes in these oxidative stress parameters.

Conclusions:

  • Corneal endothelial cells exhibit high sensitivity to toxic insults.
  • Intracameral cefuroxime may pose a greater risk of toxicity to vulnerable corneal endothelium during anterior segment surgery compared to vancomycin.
  • Standardized preparation of intracameral antibiotics in hospital pharmacies is recommended to minimize dosage errors and potential harm.

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