Publications by authors named "Shelby Redfield"

Objective: Expanded carrier screening (ECS) identified couples at-risk to have a baby with an autosomal recessive genetic condition. Several genes implicated in sensorineural hearing loss (SNHL) are included in prenatal or preconception genetics ECS testing. Early identification of SNHL risk may enable prognostication of hearing loss, early educational intervention, and minimization of unnecessary diagnostic testing.

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Objective: Studies evaluating genetic sensorineural hearing loss (SNHL) in Hispanic and Latino populations using genomic technologies are lacking. Recent data has shown that Hispanic and Latino children display lower genetic diagnostic rates despite similar prevalence rates of SNHL to their Asian and White counterparts, thus negatively affecting their clinical care. Our objective was to determine the genetic contribution to SNHL in a population of Mexican children undergoing evaluation for cochlear implantation.

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Article Synopsis
  • - The study analyzed 127 individuals from 16 medical centers across 6 countries to examine the relationship between TMPRSS3 gene variants and hearing loss, revealing 47 unique variants and their impact on hearing thresholds.
  • - Individuals carrying missense variants showed different hearing loss progression rates and performance in speech recognition tests post-cochlear implant, with age at implantation being a critical factor.
  • - This research represents the largest investigation into TMPRSS3 genotype-phenotype correlations, offering valuable insights for genetic counseling and developing new treatments for hearing loss.
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Identification of genes associated with nonsyndromic hearing loss is a crucial endeavor given the substantial number of individuals who remain without a diagnosis after even the most advanced genetic testing. PKHD1L1 was established as necessary for the formation of the cochlear hair-cell stereociliary coat and causes hearing loss in mice and zebrafish when mutated. We sought to determine if biallelic variants in PKHD1L1 also cause hearing loss in humans.

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Identification of genes associated with nonsyndromic hearing loss is a crucial endeavor given the substantial number of individuals who remain without a diagnosis after even the most advanced genetic testing. was established as necessary for the formation of the cochlear hair-cell stereociliary coat and causes hearing loss in mice and zebrafish when mutated. We sought to determine if biallelic variants in also cause hearing loss in humans.

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The hematopoietic niche is a supportive microenvironment composed of distinct cell types, including specialized vascular endothelial cells that directly interact with hematopoietic stem and progenitor cells (HSPCs). The molecular factors that specify niche endothelial cells and orchestrate HSPC homeostasis remain largely unknown. Using multi-dimensional gene expression and chromatin accessibility analyses in zebrafish, we define a conserved gene expression signature and cis-regulatory landscape that are unique to sinusoidal endothelial cells in the HSPC niche.

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Article Synopsis
  • Enlarged vestibular aqueduct (EVA) is a common cause of permanent hearing loss in children, but its impact on newborn hearing screening (NBHS) pass rates was not well understood.
  • A study analyzed 183 pediatric patients with EVA and hearing loss, revealing that 45.9% passed their NBHS, and those who passed were more likely to have unilateral EVA and were less likely to require cochlear implants.
  • The findings suggest that nearly half of children with EVA may be identified as having normal hearing at birth, emphasizing the need for ongoing hearing assessments, especially for those not suspected of hearing loss initially.
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Objectives: Genetic testing is the standard-of-care for diagnostic evaluation of bilateral, symmetric, sensorineural hearing loss (HL). We sought to determine the efficacy of a comprehensive genetic testing method, exome sequencing (ES), in a heterogeneous pediatric patient population with bilateral symmetric, bilateral asymmetric, and unilateral HL.

Methods: Trio-based ES was performed for pediatric patients with confirmed HL including those with symmetric, asymmetric, and unilateral HL.

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Epoxyeicosatrienoic acids (EETs) are lipid-derived signaling molecules with cardioprotective and vasodilatory actions. We recently showed that 11,12-EET enhances hematopoietic induction and engraftment in mice and zebrafish. EETs are known to signal via G protein-coupled receptors, with evidence supporting the existence of a specific high-affinity receptor.

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