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Updated: Oct 22, 2025

A Neonatal Imaging Model of Gram-Negative Bacterial Sepsis
Published on: August 12, 2020
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.
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.
Abstract:
Neonatal sepsis causes up to an estimated 680,000 deaths annually worldwide, predominantly in low- and middle-income countries (LMICs). A significant and growing proportion of bacteria causing neonatal sepsis are resistant to multiple antibiotics, including the World Health Organization-recommended empiric neonatal sepsis regimen of ampicillin/gentamicin. The Global Antibiotic Research and Development Partnership is aiming to develop alternative empiric antibiotic regimens that fulfil several criteria: (1) affordable in LMIC settings; (2) activity against neonatal bacterial pathogens, including extended-spectrum β-lactamase producers, gentamicin-resistant Gram-negative bacteria, and methicillin-resistant Staphylococcus aureus (MRSA); (3) a licence for neonatal use or extensive experience of use in neonates; and (4) minimal toxicities. In this review, we identify five antibiotics that fulfil these criteria: amikacin, tobramycin, fosfomycin, flomoxef, and cefepime. We describe the available characteristics of each in terms of mechanism of action, resistance mechanisms, clinical pharmacokinetics, pharmacodynamics, and toxicity profile. We also identify some knowledge gaps: (1) the neonatal pharmacokinetics of cefepime is reliant on relatively small and limited datasets, and the pharmacokinetics of flomoxef are also reliant on data from a limited demographic range and (2) for all reviewed agents, the pharmacodynamic index and target has not been definitively established for both bactericidal effect and emergence of resistance, with many assumed to have an identical index/target to similar class molecules. These five agents have the potential to be used in novel combination empiric regimens for neonatal sepsis. However, the data gaps need addressing by pharmacokinetic trials and pharmacodynamic characterisation.
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