Potential Antibiotics for the Treatment of Neonatal Sepsis Caused by Multidrug-Resistant Bacteria

Christopher A Darlow1, Renata M A da Costa2, Sally Ellis2

  • 1Antimicrobial Pharmacodynamics and Therapeutics, Institute of Systems, Molecular and Integrative Biology, University of Liverpool, Liverpool Health Partners, William Henry Duncan Building, 6 West Derby Street, Liverpool, L7 8TX, UK. cdarlow@liverpool.ac.uk.

Paediatric Drugs
|August 26, 2021
PubMed

Insights

Neonatal sepsis is a major killer, with rising antibiotic resistance. This review identifies five potential alternative antibiotics—amikacin, tobramycin, fosfomycin, flomoxef, and cefepime—for new treatment regimens in low-resource settings.

Area of Science:

  • Medical microbiology
  • Infectious diseases
  • Pharmacology

Background:

  • Neonatal sepsis causes significant global mortality, particularly in low- and middle-income countries (LMICs).
  • Increasing antibiotic resistance, including to ampicillin/gentamicin, necessitates alternative empiric treatments for neonatal sepsis.
  • Existing treatments face challenges with efficacy against resistant pathogens and safety in neonates.

Purpose of the Study:

  • To identify and review alternative antibiotics for neonatal sepsis treatment in LMICs.
  • To assess potential agents based on affordability, spectrum of activity, safety, and availability for neonatal use.
  • To highlight knowledge gaps for the development of novel empiric antibiotic regimens.

Main Methods:

  • Systematic review of existing literature on antibiotic properties.
  • Evaluation of five candidate antibiotics: amikacin, tobramycin, fosfomycin, flomoxef, and cefepime.
  • Analysis of mechanism of action, resistance, pharmacokinetics, pharmacodynamics, and toxicity.

Main Results:

  • Five antibiotics—amikacin, tobramycin, fosfomycin, flomoxef, and cefepime—meet initial criteria for alternative neonatal sepsis regimens.
  • Detailed characteristics of each agent's profile are presented.
  • Identified knowledge gaps include limited pharmacokinetic data for cefepime and flomoxef, and undefined pharmacodynamic targets for all agents.

Conclusions:

  • Amikacin, tobramycin, fosfomycin, flomoxef, and cefepime show promise for novel empiric neonatal sepsis regimens.
  • Further pharmacokinetic and pharmacodynamic studies are crucial to optimize their use and address data gaps.
  • Addressing these gaps will facilitate the development of effective and safe treatments for neonatal sepsis in LMICs.

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