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Erschienen in: International Ophthalmology 1/2016

01.02.2016 | Original Paper

Progression of gyrate atrophy measured with ultra-wide-field imaging

Erschienen in: International Ophthalmology | Ausgabe 1/2016

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Abstract

The study aims to determine the progression of gyrate atrophy by measuring the area growth of chorioretinal atrophic lesions using ultra-wide-field images (UWFI). A retrospective, observational, and comparative study was conducted and UWFI (200°) were obtained from two patients with gyrate atrophy at baseline and follow-up. Measurements of atrophy were obtained for three types of lesions: Solitary atrophic lesions (SAL), De novo solitary lesions (DNSL), and peripapillary atrophy (PPA). Comparison of baseline and follow-up was done using t tests. Two patients with gyrate atrophy were included. Patient 1 presented 16 SAL, 5 DNSL, and PPA measured for both eyes (BE). Overall area growth (OAG) for SAL (expressed in decimals) presented a mean of 3.41, σ 3.07. DNSL area for BE presented a mean of 1586.08 P 2, σ 1069.55. OAG for PPA presented a mean of 1.21, σ 0.17. Patient 2 presented 5 SAL, no DNSL, and PPA was measured for BE. OAG for SAL presented a mean of 1.58, σ 1.05 (range 1.02–3.47). OAG for PPA presented a mean of 1.05, σ 0.001. Gyrate atrophy progression can be determined by measuring the changes in area using UWFI.
Literatur
1.
Zurück zum Zitat Simell O, Takki K (1973) Raised plasma ornithine and gyrate atrophy of the choroid and retina. Lancet 1:1031–1033PubMedCrossRef Simell O, Takki K (1973) Raised plasma ornithine and gyrate atrophy of the choroid and retina. Lancet 1:1031–1033PubMedCrossRef
3.
Zurück zum Zitat Takki KK, Milton RC (1981) The natural history of gyrate atrophy of the choroid and retina. Ophthalmology 88:292–301PubMedCrossRef Takki KK, Milton RC (1981) The natural history of gyrate atrophy of the choroid and retina. Ophthalmology 88:292–301PubMedCrossRef
4.
Zurück zum Zitat Lahbil D, Hamdani M, D’khissy M et al (2000) Gyrate atrophy of the choroid and retina: a case report. J Fr Ophthalmol 23:788–793 Lahbil D, Hamdani M, D’khissy M et al (2000) Gyrate atrophy of the choroid and retina: a case report. J Fr Ophthalmol 23:788–793
5.
Zurück zum Zitat ODonnell JJ, Sandman RP, Martin SR (1978) Gyrate atrophy of the retina: inborn error of l-ornithine: 2-oxoacid aminotransferase. Science 200:200–201CrossRef ODonnell JJ, Sandman RP, Martin SR (1978) Gyrate atrophy of the retina: inborn error of l-ornithine: 2-oxoacid aminotransferase. Science 200:200–201CrossRef
6.
Zurück zum Zitat Volpe P, Sawamura R, Strecker HJ (1969) Control of ornithine delta-transaminase in rat liver and kidney. J Biol Chem 244:719–726PubMed Volpe P, Sawamura R, Strecker HJ (1969) Control of ornithine delta-transaminase in rat liver and kidney. J Biol Chem 244:719–726PubMed
7.
Zurück zum Zitat Shen BW, Hennig M, Hohenester E et al (1998) Crystal structure of human recombinant ornithine aminotransferase. J Mol Biol 277:81–102PubMedCrossRef Shen BW, Hennig M, Hohenester E et al (1998) Crystal structure of human recombinant ornithine aminotransferase. J Mol Biol 277:81–102PubMedCrossRef
8.
Zurück zum Zitat Valle D, Walser M, Brusilow SW, Kaiser-Kupfer M (1980) Gyrate atrophy of the choroid and retina: amino acid metabolism and correction of hyperornithinemia with an arginine-deficient diet. J Clin Invest 65:371–378PubMedPubMedCentralCrossRef Valle D, Walser M, Brusilow SW, Kaiser-Kupfer M (1980) Gyrate atrophy of the choroid and retina: amino acid metabolism and correction of hyperornithinemia with an arginine-deficient diet. J Clin Invest 65:371–378PubMedPubMedCentralCrossRef
9.
Zurück zum Zitat Kaiser-Kupfer MI, Caruso RC, Valle D (2002) Gyrate atrophy of the choroid and retina: further experience with long-term reduction of ornithine levels in children. Arch Ophthalmol 120:146–153PubMedCrossRef Kaiser-Kupfer MI, Caruso RC, Valle D (2002) Gyrate atrophy of the choroid and retina: further experience with long-term reduction of ornithine levels in children. Arch Ophthalmol 120:146–153PubMedCrossRef
10.
Zurück zum Zitat Wang T, Steel G, Milam AH, Valle D (2000) Correction of ornithine accumulation prevents retinal degeneration in a mouse model of gyrate atrophy of the choroid and retina. Proc Natl Acad Sci USA 97:1224–1229PubMedPubMedCentralCrossRef Wang T, Steel G, Milam AH, Valle D (2000) Correction of ornithine accumulation prevents retinal degeneration in a mouse model of gyrate atrophy of the choroid and retina. Proc Natl Acad Sci USA 97:1224–1229PubMedPubMedCentralCrossRef
11.
Zurück zum Zitat Kaiser-Kupfer MI, Caruso RC, Valle D, Reed GF (2004) Use of an arginine-restricted diet to slow progression of visual loss in patients with gyrate atrophy. Arch Ophthalmol 122:982–984PubMedCrossRef Kaiser-Kupfer MI, Caruso RC, Valle D, Reed GF (2004) Use of an arginine-restricted diet to slow progression of visual loss in patients with gyrate atrophy. Arch Ophthalmol 122:982–984PubMedCrossRef
12.
Zurück zum Zitat Caruso RC, Nussenblatt RB, Csaky KG, Valle D, Kaiser-Kupfer MI (2001) Assessment of visual function in patients with gyrate atrophy who are considered candidates for gene replacement. Arch Ophthalmol 119:667–669PubMedCrossRef Caruso RC, Nussenblatt RB, Csaky KG, Valle D, Kaiser-Kupfer MI (2001) Assessment of visual function in patients with gyrate atrophy who are considered candidates for gene replacement. Arch Ophthalmol 119:667–669PubMedCrossRef
13.
Zurück zum Zitat Berrett DJ, Bateman JB, Sparkes RH et al (1987) Chromosomal localization of human ornithine aminotransferase gene sequences to 10q26 and Xp11.2. Invest Ophthalmol Vis Sci 28:1037–1042 Berrett DJ, Bateman JB, Sparkes RH et al (1987) Chromosomal localization of human ornithine aminotransferase gene sequences to 10q26 and Xp11.2. Invest Ophthalmol Vis Sci 28:1037–1042
14.
Zurück zum Zitat Kuwabara T, Ishikawa Y, Kaiser-Kupfer MI (1981) Experimental model of gyrate atrophy in animals. Ophthalmology 88:331–335PubMedCrossRef Kuwabara T, Ishikawa Y, Kaiser-Kupfer MI (1981) Experimental model of gyrate atrophy in animals. Ophthalmology 88:331–335PubMedCrossRef
15.
Zurück zum Zitat Wilson DJ, Weleber RG, Green WR (1991) Ocular clinicopathologic study of gyrate atrophy. Am J Ophthalmol 111:24–33PubMedCrossRef Wilson DJ, Weleber RG, Green WR (1991) Ocular clinicopathologic study of gyrate atrophy. Am J Ophthalmol 111:24–33PubMedCrossRef
16.
Zurück zum Zitat Santinelli R, Costagliola C, Tolone C et al (2004) Low-protein diet and progression of retinal degeneration in gyrate atrophy of the choroid and retina: a 26 year follow-up. J Inherit Metab Dis 27:187–196PubMedCrossRef Santinelli R, Costagliola C, Tolone C et al (2004) Low-protein diet and progression of retinal degeneration in gyrate atrophy of the choroid and retina: a 26 year follow-up. J Inherit Metab Dis 27:187–196PubMedCrossRef
17.
Zurück zum Zitat Renner AB, Walter A, Fiebig BS, Jägle H (2012) Gyrate atrophy: clinical and genetic findings in a female without arginine-restricted diet during her first 39 years of life and report of a new OAT gene mutation. Doc Ophthalmol 125:81–89PubMedCrossRef Renner AB, Walter A, Fiebig BS, Jägle H (2012) Gyrate atrophy: clinical and genetic findings in a female without arginine-restricted diet during her first 39 years of life and report of a new OAT gene mutation. Doc Ophthalmol 125:81–89PubMedCrossRef
18.
Zurück zum Zitat Sergouniotis PI, Davison AE, Lenassi E et al (2012) Retinal structure, function, and molecular pathologic features in gyrate atrophy. Ophthalmology 119:596–605PubMedCrossRef Sergouniotis PI, Davison AE, Lenassi E et al (2012) Retinal structure, function, and molecular pathologic features in gyrate atrophy. Ophthalmology 119:596–605PubMedCrossRef
19.
Zurück zum Zitat Oliveira TL, Andrade RE, Muccioli C et al (2005) Cystoid macular edema in gyrate atrophy of the choroid and retina: a fluorescein angiography and optical coherence tomography evaluation. Am J Ophthalmol 140:147–149PubMedCrossRef Oliveira TL, Andrade RE, Muccioli C et al (2005) Cystoid macular edema in gyrate atrophy of the choroid and retina: a fluorescein angiography and optical coherence tomography evaluation. Am J Ophthalmol 140:147–149PubMedCrossRef
Metadaten
Titel
Progression of gyrate atrophy measured with ultra-wide-field imaging
Publikationsdatum
01.02.2016
Erschienen in
International Ophthalmology / Ausgabe 1/2016
Print ISSN: 0165-5701
Elektronische ISSN: 1573-2630
DOI
https://doi.org/10.1007/s10792-015-0085-3

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