Literature DB >> 20811064

Age-severity relationships in families linked to FCD2 with retroillumination photography.

Elyse J McGlumphy1, William S Yeo, S Amer Riazuddin, Amr Al-Saif, Jiangxia Wang, Allen O Eghrari, Danielle N Meadows, David G Emmert, Nicholas Katsanis, John D Gottsch.   

Abstract

PURPOSE: Fuchs corneal dystrophy (FCD) is a progressive disorder of the corneal endothelium and is pathologically defined by the presence of guttae, which are excrescences of the Descemet membrane. The present study was undertaken to investigate the age-severity relationship of the FCD2-linked disease phenotype using retroillumination photography and to compare it with the characteristics of FCD1.
METHODS: Two large families with multiple affected members were recruited. Exclusion analyses of the known late-onset FCD loci were completed with closely spaced STR markers, whereas genes associated with early- and late-onset FCD were investigated by bidirectional sequencing. Haplotypes were constructed, and two-point LOD scores were calculated. To document age-severity relationships, retroillumination photographs were acquired from members of both families.
RESULTS: Parametric linkage and haplotype analysis mapped both families to FCD2 with significant two-point LOD scores. A total of 70,249 guttae were counted in 14 persons from both families. A significant increase in guttae density in the inferotemporal region (P = 0.016) was observed, a pattern similarly observed in a family linked to FCD1. Similarly, FCD2-linked families display an exponential trend in severity with age, as was observed in a family linked to FCD1. Finally, comparison of FCD1 and FCD2 exponential models suggested that the FCD1 phenotype is significantly more severe (P = 0.01).
CONCLUSIONS: A combination of genetic mapping and retroillumination photography was used to quantify the severity of the disease phenotype associated with FCD2 and to compare it to the disease characteristics of FCD1. These data suggest that this approach might have sufficient resolution to discriminate between discrete genetic FCD backgrounds, which will potentially aid in patient management.

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Year:  2010        PMID: 20811064      PMCID: PMC3055756          DOI: 10.1167/iovs.10-5187

Source DB:  PubMed          Journal:  Invest Ophthalmol Vis Sci        ISSN: 0146-0404            Impact factor:   4.799


  16 in total

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2.  Linkage of late-onset Fuchs corneal dystrophy to a novel locus at 13pTel-13q12.13.

Authors:  Olof H Sundin; Albert S Jun; Karl W Broman; Sammy H Liu; Siobhan E Sheehan; Elizabeth C L Vito; Walter J Stark; John D Gottsch
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3.  Clinical profile and early surgical complications in the Cornea Donor Study.

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Journal:  Cornea       Date:  2006-02       Impact factor: 2.651

4.  Mutations in TCF8 cause posterior polymorphous corneal dystrophy and ectopic expression of COL4A3 by corneal endothelial cells.

Authors:  Charles M Krafchak; Hemant Pawar; Sayoko E Moroi; Alan Sugar; Paul R Lichter; David A Mackey; Shahzad Mian; Theresa Nairus; Victor Elner; Miriam T Schteingart; Catherine A Downs; Theresa Guckian Kijek; Jenae M Johnson; Edward H Trager; Frank W Rozsa; Md Nawajes Ali Mandal; Michael P Epstein; Douglas Vollrath; Radha Ayyagari; Michael Boehnke; Julia E Richards
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5.  Avoiding recomputation in linkage analysis.

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Authors:  G M Lathrop; J M Lalouel
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Authors:  D W Lorenzetti; M H Uotila; N Parikh; H E Kaufman
Journal:  Am J Ophthalmol       Date:  1967-12       Impact factor: 5.258

8.  Analysis and documentation of progression of Fuchs corneal dystrophy with retroillumination photography.

Authors:  John D Gottsch; Olof H Sundin; Erik V Rencs; David G Emmert; Walter J Stark; Clement J Cheng; Gregory W Schmidt
Journal:  Cornea       Date:  2006-05       Impact factor: 2.651

9.  Inheritance of a novel COL8A2 mutation defines a distinct early-onset subtype of fuchs corneal dystrophy.

Authors:  John D Gottsch; Olof H Sundin; Sammy H Liu; Albert S Jun; Karl W Broman; Walter J Stark; Elizabeth C L Vito; Amol K Narang; John M Thompson; Malcolm Magovern
Journal:  Invest Ophthalmol Vis Sci       Date:  2005-06       Impact factor: 4.799

10.  Missense mutations in TCF8 cause late-onset Fuchs corneal dystrophy and interact with FCD4 on chromosome 9p.

Authors:  S Amer Riazuddin; Norann A Zaghloul; Amr Al-Saif; Lisa Davey; Bill H Diplas; Danielle N Meadows; Allen O Eghrari; Mollie A Minear; Yi-Ju Li; Gordon K Klintworth; Natalie Afshari; Simon G Gregory; John D Gottsch; Nicholas Katsanis
Journal:  Am J Hum Genet       Date:  2009-12-31       Impact factor: 11.025

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  7 in total

1.  A multicenter study to map genes for Fuchs endothelial corneal dystrophy: baseline characteristics and heritability.

Authors:  Megan D Louttit; Laura J Kopplin; Robert P Igo; Jeremy R Fondran; Angela Tagliaferri; David Bardenstein; Anthony J Aldave; Christopher R Croasdale; Marianne O Price; George O Rosenwasser; Jonathan H Lass; Sudha K Iyengar
Journal:  Cornea       Date:  2012-01       Impact factor: 2.651

2.  Retroillumination Photography Analysis Enhances Clinical Definition of Severe Fuchs Corneal Dystrophy.

Authors:  Allen O Eghrari; Brian S Garrett; Aisha A Mumtaz; Armand E Edalati; Danielle N Meadows; Elyse J McGlumphy; Benjamin W Iliff; John D Gottsch
Journal:  Cornea       Date:  2015-12       Impact factor: 2.651

3.  Automated Retroillumination Photography Analysis for Objective Assessment of Fuchs Corneal Dystrophy.

Authors:  Allen O Eghrari; Aisha A Mumtaz; Brian Garrett; Mahsa Rezaei; Mina S Akhavan; S Amer Riazuddin; John D Gottsch
Journal:  Cornea       Date:  2017-01       Impact factor: 2.651

4.  Relationship of Fuchs endothelial corneal dystrophy severity to central corneal thickness.

Authors:  Laura J Kopplin; Katie Przepyszny; Brian Schmotzer; Karen Rudo; Denise C Babineau; Sanjay V Patel; David D Verdier; Ula Jurkunas; Sudha K Iyengar; Jonathan H Lass
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5.  Expansion of CTG18.1 Trinucleotide Repeat in TCF4 Is a Potent Driver of Fuchs' Corneal Dystrophy.

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6.  Prevalence and severity of fuchs corneal dystrophy in Tangier Island.

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