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Updated: May 5, 2026

Non-Invasive Model of Neuropathogenic Escherichia coli Infection in the Neonatal Rat
Published on: October 29, 2014
New and old lessons from a devastating case of neonatal E coli meningitis
Tawny Saleh1, Edwin Kamau2,3, Jennifer A Rathe4
1Department of Pediatrics, Division of Infectious Diseases, David Geffen School of Medicine at UCLA, Los Angeles, CA, USA.
Insights
Neonatal E coli meningitis can be challenging, requiring advanced diagnostics like acridine orange stain when traditional methods fail. This case highlights the need for persistent treatment to achieve cerebrospinal fluid sterility and resolve infection in premature infants.
Area of Science:
- Neonatal Neurology
- Infectious Diseases
- Microbiology
Background:
- Neonatal Escherichia coli (E. coli) meningitis presents a significant threat to infant health, associated with high rates of morbidity and mortality.
- Recurrent E. coli infections in neonates can lead to extensive central nervous system (CNS) damage, necessitating complex management strategies.
Observation:
- A premature infant experienced recurrent ampicillin-resistant E. coli meningitis despite prolonged antibiotic therapy.
- Cerebrospinal fluid (CSF) analysis revealed persistent pleocytosis and negative results from standard cultures, PCR, and metagenomic sequencing.
- Acridine orange stain identified bacteria missed by other methods, indicating limitations in conventional diagnostic techniques.
Findings:
- Non-traditional diagnostic methods, including acridine orange stain, were crucial in identifying persistent E. coli infection.
- Intraventricular and systemic antibiotic therapy, including cefepime, tobramycin, and ciprofloxacin, was ultimately successful in achieving CSF sterility and resolving pleocytosis.
- The case underscores the limitations of traditional microbiologic techniques in confirming CSF sterility and the potential for premature antibiotic discontinuation.
Implications:
- Neonatal E. coli meningitis may require extended and broader-spectrum antibiotic courses compared to other bacterial meningitis cases.
- Advanced diagnostic tools are essential for accurate pathogen detection and monitoring treatment efficacy in complex neonatal CNS infections.
- Careful consideration of diagnostic limitations is vital to prevent neurological damage in vulnerable neonates with persistent meningitis.
Background:
Neonatal Escherichia coli (E coli) meningitis results in significant morbidity and mortality. We present a case of a premature infant with extensive central nervous system (CNS) injury from recurrent E coli infection and the non-traditional methods necessary to identify and clear the infection.
Case Presentation:
The infant was transferred to our institution's pediatric intensive care unit (PICU) after recurrence of E coli CNS infection requiring neurosurgical intervention. He had been treated for early onset sepsis (EOS) with ampicillin and gentamicin for 10 days followed by rapid development of ampicillin-resistant E coli septic shock and meningitis after discontinuation of antibiotics. Sterility of the CNS was not confirmed at the end of 21 days of cefepime therapy and was subsequently followed by recurrent ampicillin-resistant E coli septic shock and CNS infection. Despite 6 weeks of appropriate therapy with sterility of CSF by traditional methods, he suffered from intractable seizures with worsening hydrocephalus. Transferred to our institution, he underwent endoscopic 3rd ventriculostomy with cyst fenestration revealing purulent fluid and significant pleocytosis. An additional 3 weeks of systemic and intraventricular antibiotics with cefepime and tobramycin were given but a significant CNS neutrophil-predominant pleocytosis persisted (average of ∼ 21,000 cells/mm3). Repeated gram stains, cultures, polymerase chain reaction (PCR) testing, and metagenomic next generation sequencing (NGS) testing of CSF were negative for pathogens but acridine orange stain (AO) revealed numerous intact rod-shaped bacteria. After the addition of ciprofloxacin, sterility and resolution of CSF pleocytosis was finally achieved.
Conclusion:
Neonatal E coli meningitis is a well-known entity but unlike other bacterial infections, it has not proven amenable to shorter, more narrow-spectrum antibiotic courses or limiting invasive procedures such as lumbar punctures. Further, microbiologic techniques to determine CSF sterility suffer from poorly understood limitations leading to premature discontinuation of antibiotics risking further neurologic damage in vulnerable hosts.
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