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Published on: November 20, 2015
Prolonged Antibiotic Exposure During Gestation Increases the Severity of Perinatal Asphyxia as Measured by EEG
Vlad-Petru Morozan1,2, Mihai Stancu1,3, Mara Ioana Ionescu1,4
1Division of Physiology-Neuroscience, Carol Davila University of Medicine and Pharmacy, 050474 Bucharest, Romania.
Insights
Gestational antibiotic exposure worsened perinatal asphyxia outcomes in offspring, indicated by reduced electroencephalography (EEG) reactivity. Probiotics partially mitigated these negative effects, suggesting a potential therapeutic role.
Area of Science:
- Neuroscience
- Microbiology
- Neonatal Medicine
Background:
- Birth asphyxia is a common neonatal issue with variable outcomes.
- Maternal gut microbiome disruption may impact offspring neurodevelopment, particularly after perinatal asphyxia (PA).
- EEG reactivity to photic stimulation can detect functional brain impairment post-PA.
Purpose of the Study:
- To assess if prolonged gestational antibiotic administration further impairs EEG reactivity after PA.
- To investigate if probiotics can modulate the effects of gestational antibiotics on PA-induced neurodevelopmental outcomes.
Main Methods:
- Wistar dams received antibiotics, probiotics, or control treatments; offspring underwent PA.
- Adult offspring EEG reactivity to photic stimulation was measured during chloral hydrate-induced burst suppression.
- Burst count reactivity (BCR) and burst-suppression reactivity index (BSRi) were used as primary readouts.
Main Results:
- Gestational antibiotic treatment led to lower BCR compared to controls.
- Probiotic coadministration attenuated the negative impact of antibiotics on BCR.
- BSRi analysis revealed a similar pattern, confirming the findings.
Conclusions:
- Prolonged gestational antibiotic exposure exacerbates PA severity, evidenced by altered adult offspring EEG reactivity.
- BCR and BSRi serve as reliable functional neurophysiological readouts in this PA model.
- EEG reactivity measures show promise for translational studies on hypoxic-ischemic brain injury.
Background/Objectives:
Birth asphyxia is a frequent neonatal complication in humans. Its outcome is variable, and the factors underlying this variability remain incompletely understood. Maternal gut microbiome impairment has been proposed as one factor that may influence offspring neurodevelopment, especially when the immature brain is exposed to additional vulnerability such as perinatal asphyxia (PA). Building on our previous maternal microbiome disruption model and on our prior observation that electroencephalography (EEG) reactivity to photic stimulation under deep anesthesia detects functional impairment two months after PA, we assessed whether this reactivity was further impaired after prolonged gestational antibiotic administration and whether probiotics modulated this effect.
Methods:
Wistar dams received antibiotics, probiotics, antibiotics with probiotics, or control treatment, and offspring underwent PA. Adult EEG reactivity to photic stimulation was assessed during chloral hydrate-induced burst suppression. Burst count reactivity (BCR) was used as the primary event-based readout of stimulus-evoked burst recruitment and was compared with the suppression-ratio-based burst-suppression reactivity index (BSRi).
Results:
Burst suppression remained reactive to photic stimulation in all groups. BCR was lower after gestational antibiotic treatment than in controls. The magnitude of the effect was attenuated by probiotics coadministration. BSRi showed the same overall pattern.
Conclusions:
Prolonged gestational antibiotic exposure increased the severity of perinatal asphyxia as measured by EEG reactivity in the adult offspring. The converging BCR and BSRi results support burst-suppression reactivity as a functional neurophysiological readout in this PA model and support further methodological development of EEG reactivity measures for translational studies of hypoxic-ischemic brain injury.
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