Literature DB >> 24880027

The genetics of auricular development and malformation: new findings in model systems driving future directions for microtia research.

Timothy C Cox1, Esra D Camci2, Siddharth Vora2, Daniela V Luquetti3, Eric E Turner4.   

Abstract

Microtia is a term used to describe a wide array of phenotypic presentations of the outer ear. Although the majority of the cases are isolated in nature, much of our understanding of the causes of microtia has been driven by the identification of genes underlying syndromic forms where the anomaly co-presents with various other craniofacial and extra-craniofacial structural defects. In this review we discuss recent findings in mice deficient in Hoxa2, a key regulator of branchial arch patterning, which has necessitated a revision to the canonical model of pinna morphogenesis. The revised model will likely impact current classification schemes for microtia and, as we argue in this review, the interpretation of the developmental basis for various auricular malformations. In addition, we highlight recent studies in other mammalian species that are providing the first clues as to possible causes of at least some isolated anomalies and thus should now accelerate the search for the more elusive genetic contributions to the many isolated and non-syndromic cases of microtia. These findings, together with the application of new genome-level sequencing technologies and more thorough quantitative assessment of available mutant mouse resources, promise an exciting future for genetic studies in microtia.
Copyright © 2014 Elsevier Masson SAS. All rights reserved.

Entities:  

Keywords:  Anotia; Auricular development; Craniofacial microsomia; Goldenhar syndrome; Microtia; Mouse models; OAVS

Mesh:

Year:  2014        PMID: 24880027      PMCID: PMC4143470          DOI: 10.1016/j.ejmg.2014.05.003

Source DB:  PubMed          Journal:  Eur J Med Genet        ISSN: 1769-7212            Impact factor:   2.708


  60 in total

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Authors:  Qingguo Zhang; Jiao Zhang; Wei Yin
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Journal:  J Med Genet       Date:  2009-03-16       Impact factor: 6.318

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Authors:  Robert J Munroe; Vinay Prabhu; Greg M Acland; Kenneth R Johnson; Belinda S Harris; Tim P O'Brien; Ian C Welsh; Drew M Noden; John C Schimenti
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Authors:  Lely A Quina; Lynne Tempest; Yun-Wei A Hsu; Timothy C Cox; Eric E Turner
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Journal:  Development       Date:  2016-06-10       Impact factor: 6.868

5.  Whole-exome sequencing analysis in 10 families of sporadic microtia with thoracic deformities.

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6.  A genome-wide association study identifies multiple loci for variation in human ear morphology.

Authors:  Kaustubh Adhikari; Guillermo Reales; Andrew J P Smith; Esra Konka; Jutta Palmen; Mirsha Quinto-Sanchez; Victor Acuña-Alonzo; Claudia Jaramillo; William Arias; Macarena Fuentes; María Pizarro; Rodrigo Barquera Lozano; Gastón Macín Pérez; Jorge Gómez-Valdés; Hugo Villamil-Ramírez; Tábita Hunemeier; Virginia Ramallo; Caio C Silva de Cerqueira; Malena Hurtado; Valeria Villegas; Vanessa Granja; Carla Gallo; Giovanni Poletti; Lavinia Schuler-Faccini; Francisco M Salzano; Maria-Cátira Bortolini; Samuel Canizales-Quinteros; Francisco Rothhammer; Gabriel Bedoya; Rosario Calderón; Javier Rosique; Michael Cheeseman; Mahmood F Bhutta; Steve E Humphries; Rolando Gonzalez-José; Denis Headon; David Balding; Andrés Ruiz-Linares
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7.  Multiethnic GWAS Reveals Polygenic Architecture of Earlobe Attachment.

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Journal:  Am J Hum Genet       Date:  2017-11-30       Impact factor: 11.025

8.  An analytical study of neocartilage from microtia and otoplasty surgical remnants: A possible application for BMP7 in microtia development and regeneration.

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9.  Correlation Between the Sites of Onset of Basal Cell Carcinoma and the Embryonic Fusion Planes in the Auricle.

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10.  Target sequencing of 307 deafness genes identifies candidate genes implicated in microtia.

Authors:  Pu Wang; Xinmiao Fan; Yibei Wang; Yue Fan; Yaping Liu; Shuyang Zhang; Xiaowei Chen
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