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Published on: July 13, 2014
Prenatal Exposure to Tobacco and Alcohol Alters Development of the Neonatal Auditory System
Yvonne S Sininger1,2, Carmen G Condon3, Lissete A Gimenez3
1Department of Head & Neck Surgery, University of California, Los Angeles, California, USA.
Insights
Prenatal alcohol and tobacco exposures harm infant auditory development. These exposures, even in combination, disrupt auditory pathways, impacting hearing from birth through infancy.
Area of Science:
- Neuroscience
- Developmental Biology
- Audiology
Background:
- Prenatal alcohol exposure (PAE) and prenatal tobacco exposure (PTE) are linked to adverse developmental outcomes.
- The specific effects of PAE and PTE on the developing auditory system, especially in combination, are not well understood.
Purpose of the Study:
- To investigate the impact of PAE and PTE on auditory system development in infants.
- To characterize the timing and extent of auditory pathway disruption from these exposures.
Main Methods:
- Auditory Brainstem Responses (ABRs) and Transient Otoacoustic Emissions (TEOAEs) were measured in infants at birth and one month.
- Prenatal alcohol and tobacco exposure levels were prospectively assessed and categorized using cluster analysis.
- Repeated-measures ANOVAs were used to analyze ABR and TEOAE data, controlling for relevant covariates.
Main Results:
- PTE was associated with reduced ABR latencies in newborns and reduced ABR amplitudes at one month.
- PAE was linked to reduced TEOAE amplitude in the left ear at one month.
- Both PAE and PTE demonstrated early disruption of auditory system development.
Conclusions:
- Prenatal alcohol and tobacco exposures significantly impact the developing auditory system.
- These exposures affect peripheral, brainstem, and cortical auditory pathways, including the olivocochlear pathway.
- Early auditory assessment is crucial for infants with prenatal exposure to alcohol or tobacco.
Abstract:
Prenatal exposures to alcohol (PAE) and tobacco (PTE) are known to produce adverse neonatal and childhood outcomes including damage to the developing auditory system. Knowledge of the timing, extent, and combinations of these exposures on effects on the developing system is limited. As part of the physiological measurements from the Safe Passage Study, Auditory Brainstem Responses (ABRs) and Transient Otoacoustic Emissions (TEOAEs) were acquired on infants at birth and one-month of age. Research sites were in South Africa and the Northern Plains of the U.S. Prenatal information on alcohol and tobacco exposure was gathered prospectively on mother/infant dyads. Cluster analysis was used to characterize three levels of PAE and three levels of PTE. Repeated-measures ANOVAs were conducted for newborn and one-month-old infants for ABR peak latencies and amplitudes and TEOAE levels and signal-to-noise ratios. Analyses controlled for hours of life at test, gestational age at birth, sex, site, and other exposure. Significant main effects of PTE included reduced newborn ABR latencies from both ears. PTE also resulted in a significant reduction of ABR peak amplitudes elicited in infants at 1-month of age. PAE led to a reduction of TEOAE amplitude for 1-month-old infants but only in the left ear. Results indicate that PAE and PTE lead to early disruption of peripheral, brainstem, and cortical development and neuronal pathways of the auditory system, including the olivocochlear pathway.
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