THE EFFECT OF DONOR AGE ON CORNEAL TRANSPLANTATION OUTCOME: RESULTS OF THE CORNEA DONOR STUDY

2008 ◽  
Vol 9 (4) ◽  
pp. 226-227
Author(s):  
Eric Donnenfeld
1997 ◽  
Vol 81 (10) ◽  
pp. 835-839 ◽  
Author(s):  
K. A Williams ◽  
S. M Muehlberg ◽  
R. F Lewis ◽  
D. J Coster

2021 ◽  
pp. bjophthalmol-2020-318204
Author(s):  
Zohra Chibani ◽  
Imen Zone Abid ◽  
Peter Söderkvist ◽  
Jamel Feki ◽  
Mounira Hmani Aifa

BackgroundAutosomal recessive congenital hereditary corneal dystrophy (CHED) is a rare isolated developmental anomaly of the eye characterised by diffuse bilateral corneal clouding that may lead to visual impairment requiring corneal transplantation. CHED is known to be caused by mutations in the solute carrier family 4 member 11 (SLC4A11) gene which encodes a membrane transporter protein (sodium bicarbonate transporter-like solute carrier family 4 member 11).MethodsTo identify SLC4A11 gene mutations associated with CHED (OMIM: #217700), genomic DNA was extracted from whole blood and sequenced for all exons and intron-exon boundaries in two large Tunisian families.ResultsA novel deletion SLC4A11 mutation (p. Leu479del; c.1434_1436del) is responsible for CHED in both analysed families. This non-frameshift mutation was found in a homozygous state in affected members and heterozygous in non-affected members. In silico analysis largely support the pathogenicity of this alteration that may leads to stromal oedema by disrupting the osmolarity balance. Being localised to a region of alpha-helical secondary structure, Leu479 deletion may induce protein-compromising structural rearrangements.ConclusionTo the best of our knowledge, this is the first clinical and genetic study exploring CHED in Tunisia. The present work also expands the list of pathogenic genotypes in SLC4A11 gene and its associated clinical diagnosis giving more insights into genotype–phenotype correlations.


Author(s):  
Julia Shatten ◽  
Roheena Kamyar ◽  
Deepinder Dhaliwal ◽  
Regis P. Kowalski ◽  
Vishal Jhanji

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