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Concurrent Hearing and Genetic Screening of 180,469 Neonates with Follow-up in Beijing, China
Pu Dai1, Li-Hui Huang2, Guo-Jian Wang1
1Department of Otolaryngology Head and Neck Surgery, Chinese People's Liberation Army (PLA) General Hospital, Beijing, 100853, P. R. China.
Insights
Concurrent newborn hearing and genetic screening identifies infants at risk for deafness and ototoxicity. This comprehensive approach aids early intervention and prevention strategies for hearing loss in infants.
Area of Science:
- Genetics
- Audiology
- Public Health
Background:
- Congenital deafness impacts early development and requires timely intervention.
- Genetic factors significantly contribute to hearing loss, including late-onset and drug-induced forms.
- Early identification of at-risk infants is crucial for effective management and prevention of hearing impairment.
Purpose of the Study:
- To evaluate the effectiveness of concurrent hearing and genetic screening in a large newborn population.
- To identify infants at risk for congenital, late-onset, progressive, or drug-induced hearing loss.
- To assess the role of genetic variants in hearing screening outcomes and inform ototoxicity prevention.
Main Methods:
- A cohort study involving 180,469 newborns in Beijing, China.
- Hearing screening using transiently evoked otoacoustic emission (TEOAE) and automated auditory brainstem response (AABR).
- Genetic screening of nine variants in GJB2, SLC26A4, mtDNA 12S rRNA, and GJB3 using DNA microarray on dried blood spots.
Main Results:
- 1.061% of infants were referred for hearing screening, and 4.508% tested positive for genetic variants.
- 0.022% carried homozygous or compound heterozygous variants in GJB2 or SLC26A4, with 25% passing initial hearing screening.
- 0.227% carried mtDNA 12S rRNA variants (m.1555A>G or m.1494C>T), with 99% passing initial hearing screening.
Conclusions:
- Concurrent hearing and genetic screening offers a more comprehensive strategy for managing congenital deafness.
- This integrated approach aids in predicting progressive hearing loss and identifying susceptibility to drug-induced hearing loss.
- Early identification through combined screening facilitates timely intervention and ototoxicity prevention in at-risk newborns.
Abstract:
Concurrent hearing and genetic screening of newborns is expected to play important roles not only in early detection and diagnosis of congenital deafness, which triggers intervention, but also in predicting late-onset and progressive hearing loss and identifying individuals who are at risk of drug-induced HL. Concurrent hearing and genetic screening in the whole newborn population in Beijing was launched in January 2012. This study included 180,469 infants born in Beijing between April 2013 and March 2014, with last follow-up on February 24, 2018. Hearing screening was performed using transiently evoked otoacoustic emission (TEOAE) and automated auditory brainstem response (AABR). For genetic testing, dried blood spots were collected and nine variants in four genes, GJB2, SLC26A4, mtDNA 12S rRNA, and GJB3, were screened using a DNA microarray platform. Of the 180,469 infants, 1,915 (1.061%) were referred bilaterally or unilaterally for hearing screening; 8,136 (4.508%) were positive for genetic screening (heterozygote, homozygote, or compound heterozygote and mtDNA homoplasmy or heteroplasmy), among whom 7,896 (4.375%) passed hearing screening. Forty (0.022%) infants carried two variants in GJB2 or SLC26A4 (homozygote or compound heterozygote) and 10 of those infants passed newborn hearing screening. In total, 409 (0.227%) infants carried the mtDNA 12S rRNA variant (m.1555A>G or m.1494C>T), and 405 of them passed newborn hearing screening. In this cohort study, 25% of infants with pathogenic combinations of GJB2 or SLC26A4 variants and 99% of infants with an m.1555A>G or m.1494C>T variant passed routine newborn hearing screening, indicating that concurrent screening provides a more comprehensive approach for management of congenital deafness and prevention of ototoxicity.
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