Pharmacokinetics of Cefazolin and Vancomycin in Infants Undergoing Open-Heart Surgery With Cardiopulmonary Bypass

Jerry Ingrande1, Kathleen Gutierrez2, Hendrikus J Lemmens3

  • 1From the Department of Anesthesiology, University of California, San Diego School of Medicine, San Diego, California.

Insights

Optimized antibiotic dosing for infants undergoing cardiac surgery is crucial for preventing surgical site infections. This study establishes optimal cefazolin and vancomycin regimens to maintain effective drug concentrations against staphylococci.

Area of Science:

  • Pharmacokinetics and Infectious Disease
  • Pediatric Cardiac Surgery
  • Antibiotic Prophylaxis

Background:

  • Gram-positive bacteria cause most surgical site infections (SSIs).
  • Standard SSI prophylaxis involves cephalosporins or vancomycin.
  • Optimal antibiotic dosing for infants undergoing cardiac surgery is not well-defined.

Purpose of the Study:

  • To determine optimal cefazolin and vancomycin dosing regimens for infants undergoing cardiac surgery.
  • To establish pharmacokinetic evidence for antibiotic prophylaxis in this population.
  • To reduce institutional variability in antibiotic dosing.

Main Methods:

  • Two cohorts of infants (N=10 each) undergoing cardiac surgery with cardiopulmonary bypass were studied.
  • Plasma concentrations of vancomycin and cefazolin were measured.
  • Mixed-effects pharmacokinetic models and simulations were used to determine optimal dosing.

Main Results:

  • Pharmacokinetic models showed weight and age as significant covariates for vancomycin and cefazolin, respectively.
  • Cardiopulmonary bypass did not significantly impact drug concentration profiles.
  • Recommended regimens: Vancomycin 15 mg·kg (1-hour infusion, q12h) and Cefazolin 30 mg·kg (10-minute infusion, q4h).

Conclusions:

  • Established vancomycin and cefazolin dosing regimens maintain therapeutic concentrations against staphylococci in infants undergoing cardiac surgery.
  • Cefazolin may offer some coverage against Gram-negative bacteria.
  • Cardiopulmonary bypass has a negligible effect on antibiotic pharmacokinetics in this setting.
Abstract

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