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Autosomal juvenile retinoschisis without foveal retinoschisis.

We describe hereditary retinoschisis without foveal retinoschisis in a girl (the product of a consanguineous marriage) and her father. The father had peripheral retinoschisis with dendritic changes of the retina and good visual acuity. The daughter had peripheral retinoschisis complicated by vitreous haemorrhage and retinal detachment. Neither had foveal retinoschisis. The pattern in a scotopic single-flash electroretinogram differentiated this condition from other forms of retinoschisis. We believe that these cases represent the autosomal recessive form of juvenile retinoschisis without foveal retinoschisis.

Adult↗

Analysis of results in the treatment of peripheral retinoschisis in sex-linked congenital retinoschisis.

Curative and prophylactic treatment of peripheral retinoschisis has been studied over a period of 20 years in 60 cases of sex-linked congenital retinoschisis. Peripheral retinoschisis occurred in 36 of 120 eyes. In all, 12 severely affected eyes in children under 10 years of age underwent surgery (8 improvements and 4 aggravations) and 21 cases were photocoagulated (18 stabilisations and 3 aggravations that were subsequently treated by surgery); 6 cases were not treated. Aggravations after surgery or photocoagulation were consistently observed in the early post-operative follow-up period. An epidemiological study of these 60 patients demonstrated that bullous-phase peripheral retinoschisis occurs only in patients under 10 years of age, with a tendency to regress with age (no cases were reported in patients over 50 years of age). This study closely corroborates the findings of authors who think that this type of retinoschisis tends to improve spontaneously and that indications for prophylactic or curative treatment should be very carefully considered.

Adolescent↗

Assessment of RS1 in X-linked juvenile retinoschisis and sporadic senile retinoschisis.

The RS1 gene is the causative gene in X-linked juvenile retinoschisis (RS). We have screened this gene for mutations in 13 patients with RS and in 7 probands with senile retinoschisis, a sporadic, later-onset form of retinoschisis. Mutations were detected in all RS patients. Of the 11 different mutations identified, six have been reported previously and live are novel. We did not find mutations in any of the senile retinoschisis patients and conclude that senile retinoschisis is not the result of germline mutations in the RS1 gene.

Adult↗

[Results of peripheral retinoschisis treatment in sex-linked congenital retinoschisis].

Overall study of 20 years of curative and prophylactic peripheral retinoschisis treatment in 60 cases of sex linked congenital retinoschisis. Peripheral retinoschisis was present in 36 out of 120 eyes. Twelve eyes of children under 10 years severely affected, have undergone surgery (8 improvements and 4 aggravations) and 21 cases were photocoagulated (18 stabilizations, 3 aggravations which were subsequently treated by surgery). Six cases were not treated. Aggravations after surgery or photocoagulation have always been observed in early postoperative follow-up period. The above findings bring to light the problems of treatment. An epidemiological study of these 60 patients demonstrates that peripheral retinoschisis into bullous phase is only present under 5 years of age with tendency to regress with age (none reported after age of 50). This study corroborates ad absurdum the results of some authors who think that this type of retinoschisis has a tendency to improve spontaneously, and that indications for prophylactic and curative treatment must be thought of very carefully.

Adolescent↗

Functional implications of the spectrum of mutations found in 234 cases with X-linked juvenile retinoschisis. The Retinoschisis Consortium.

X-linked retinoschisis (XLRS) is the most common cause of juvenile macular degeneration in males, resulting in vision loss early in life. The gene involved in XLRS was identified recently. It encodes a protein with a disoidin domain, suggested to be involved in cell-cell interactions. We have screened the gene for mutations in 234 familial and sporadic retinoschisis cases and identified 82 different mutations in 214 (91%). Thirty one mutations were found more than once, i.e. 2-10 times, with the exception of the 214G-->A mutation which was found in 34 apparently unrelated cases. The origin of the patients, the linkage data and the site of the mutations (mainly CG dinucleotides) indicate that most recurrent mutations had independent origins and thus suggest the existence of a significant new mutation rate in XLRS1. The mutations identified cover the entire spectrum, from small intra-genic deletions (7%), to nonsense (6%), missense (75%), small frameshifting insertions/deletions (6%) and splice site mutations (6%). Since, regardless of the mutation type, no females with a typical RS phenotype were identified, RS seems to be caused by loss-of-function mutations only. Mutations occurred non-randomly, with hotspots at several CG dinucleotides and a C6stretch. Exons 1-3 contained few, mainly translation-truncating mutations, arguing against an important functional role for this segment of the protein. Exons 4-6, encoding the discoidin domain, contained most, mainly missense mutations. An alignment of 32 discoidin domain proteins was constructed to reveal the consensus sequence and to deduce the functional importance of the missense mutations identified. The mutation analysis revealed a high preponderance of mutations involving or creating cysteine residues, pointing to sites important for the tertiary folding and/or protein function, and highlights several amino acids which may be involved in XLRS1-specific protein-protein interactions. Despite the enormous mutation heterogeneity, patients have relatively uniform clinical manifestations although with great intra-familial variation in age at onset and progression.

Adolescent↗

X-linked juvenile retinoschisis: mutations at the retinoschisis and Norrie disease gene loci?

Juvenile retinoschisis (RS) and Norrie disease (ND) are X-linked recessive retinal disorders. Both disorders, in the majority of cases, are monogenic and are caused by mutations in the RS and ND genes, respectively. Here we report the identification of a family in which mutations in both the RS and ND genes are segregating with RS pathology. Although the mutations identified in this report were not functionally characterized with regard to their pathogenicity, it is likely that both of them are involved in RS pathology in the family analyzed. This suggests the complexity and digenic nature of monogenic human disorders in some cases. If this proves to be a widespread problem, it will complicate the strategies used to identify the genes involved in diseases and to develop methods for intervention.

Base Sequence↗

[Surgical treatment of progressive and symptomatic retinal detachment in senile retinoschisis].

BACKGROUND: This is 23-years retrospective study of consecutive, non-selected patients with senile retinoschisis and rare progressive and symptomatic retinal detachment (RD). The presence of RD was manifested by spectrum of retinal pathology of inner and outer layers of senile retinoschisis, ranging from simple holes to giant tears with or without proliferative vitreoretinopathy. The goals of this study were: 1--to evaluate the characteristics of the progressive and symptomatic RD based on detail preoperative examination of the eye, 2--to evaluate the anatomic and functional results of RD surgery. PATIENTS AND METHODS: From 1978 to 1999, RD surgery was performed on 57 eyes of 55 patients (28 men and 27 women) with senile retinoschisis and progressive and symptomatic RD. On average, we observed the patients for approximately 11.3 years after surgery; the minimum follow-up period was 20 months. The patients were divided in two groups according to the preoperative findings and the surgical procedures. Based on the size and the location of the defects of the inner and outer layer of senile retinoschisis and the proliferative vitreoretinopathy these procedures were indicated: 1--Uncomplicated cases of progressive and symptomatic retinal detachment were operated on primary cryopexy and scleral buckling (CSB) with episcleral silicone implants in 45 eyes. 2--Complicated cases of progressive and symptomatic retinal detachment underwent a pars plana vitrectomy (PPV) in 12 eyes: a--primary PPV was used as the primary treatment method in 6 eyes, b--secondary PPV as a secondary treatment method after unsuccessfully primary CSB with episcleral silicone implants in next 6 eyes. RESULTS: Characteristics preoperative findings were: RD in two or more quadrants in 84.2% of the eyes, including macula region in 71.9% of the eyes. Defect of the outer layer of senile retinoschisis was located postequatorial in 80% of the eyes, large retinal tears were found in 53.3% of the eyes and single defect was diagnosed in 68.8% of the eyes. Defect the of inner layer of senile retinoschisis was located equatorial in 69.5% of the eyes, small defects were found in 78.2% of the eyes and multiple defects were diagnosed in 58.6% of the eyes. Defects of the outer and the inner layer of senile retinoschisis were diagnosed in the equal quadrant in 61.4% of the eyes. The results of surgery varied, depending on the size and location of the defects of the inner and outer layer of senile retinoschisis and proliferative vitreoretinopathy: 1--The complete retinal reattachment in group treated with CSB was achieved in 43 eyes (95.5%), the average visual acuity was 0.34-2--The complete retinal reattachment in group treated with PPV was achieved by: a--primary PPV in six eyes, the average visual acuity was 0.37, b--secondary PPV four eyes, the average visual acuity was 0.16. CONCLUSIONS: Characteristic of senile retinoschisis, especially its defects of inner and outer layers is important preoperative finding for optimal indication of primary surgical treatment of progressive and symptomatic retinal detachment. According to our clinical experiences we created the syllabus of the care about the senile retinoschisis and syllabus of surgical treatment of progressive and symptomatic RD. Standard surgical procedures are the CSB and in the last period also primary PPV.

Adult↗

Prevalence and long-term natural course of retinoschisis among elderly individuals: the Copenhagen City Eye Study.

PURPOSE: To characterize the prevalence and natural course of retinoschisis in a 14-year follow-up study. DESIGN: Population-based cohort study. PARTICIPANTS: Nine hundred forty-six residents, aged 60 to 80 years, living in the Østerbro district of Copenhagen, participated in the prevalence study from 1986 to 1988. Excluding participants who died since baseline, 359 persons (97.3% of survivors) were reexamined after 14 years from 2000 to 2002. Of the 946 participants, 35 persons had prevalent retinoschisis in 1 or both eyes at baseline and 15 of these persons were alive at follow-up. METHODS: Participants underwent an extensive ophthalmologic examination at Rigshospitalet, the National University Hospital of Copenhagen. Standardized protocols for the ophthalmologic examination included retinal evaluation by use of Goldmann's 3-mirror contact lens and ultrasonic B-scan of the retina. Data for the 20 persons who died were obtained from the National Patient Register and the National Central Person Register. MAIN OUTCOME MEASURES: The prevalence, presence, disappearance, and progression of peripheral retinoschisis over a period of 14 years. RESULTS: The age-standardized prevalence of retinoschisis was 3.9% (95% confidence interval, 2.6-5.2) in persons aged 60 to 80 years. Gender and increasing age at baseline were not associated with the presence of retinoschisis. The retinal quadrant of maximal involvement was the inferior temporal (44.4%). One case of symptomatic progressive retinal detachment occurred during follow-up (2.2%). This was preceded by cataract surgery. Four persons developed retinoschisis in the contralateral eye during follow-up; therefore, the incidence of retinoschisis was 16% and bilaterality was 57.1% at follow-up. However, in 14 persons (73.7%) the retinoschisis remained unchanged. The disappearance rate was 8.8% (n = 4). CONCLUSIONS: These findings indicate that senile retinoschisis primarily is bilateral, asymptomatic, and nonprogressive and should not be treated routinely. Cataract extraction is a possible risk factor for progressive retinal detachment.

Aged↗

[Retinoschisis. 1. Diagnosis, classification, examination methods].

Extensive clinical data (595 patients) were made use of to work out a clinical classification and to isolate 2 groups of patients, i.e. one with primary retinoschisis and the other with secondary retinoschisis. According to etiopathogenesis, primary retinoschisis is subdivided into the inherited (congenital) variation and the acquired one. Congenital retinoschisis comprises, in its turn, juvenile and linked with X-chromosome variants as well as retinoschisis observed in Goldman-Favre and Wagner syndromes. The group of acquired retinoschisis is made up of degenerative (senile) and myopic variants, which are triggered by the typical or cystic peripheral retinal degeneration. Secondary retinoschisis is observed in different eye diseases like trauma, diabetes, uveitis, angiomatosis etc. The central, peripheral and combined retinoschisis variations are distinguished according to localization; two variations are distinguished according to the disease clinical course, i.e. stationary with demarcation and complicated progressing without demarcation and with uneven borders. The study results show that retinoschisis of any variation begins at the extreme periphery; lamination of the flat type develops primarily in the lower-external quadrant and the one of the bullous type--in the upper-external quadrant.

Adult↗

X-linked retinoschisis: a clinical and molecular genetic review.

X-linked retinoschisis is a leading cause of macular degeneration in male children. It is characterized by a high degree of clinical variability. Clinical features include a stellate foveal retinoschisis, with or without peripheral retinoschisis. The schisis occurs within the inner retina, primarily at the level of the nerve fiber layer. The disease-causing gene, X-linked retinoschisis 1, has recently been identified, and is expressed in photoreceptor and bipolar cells. This gene codes for retinoschisin, a secreted protein containing a discoidin domain which may be involved in cellular adhesion or cell-cell interactions. The identification of this gene allows for improved diagnosis and contributes to the understanding of this condition. Visual prognosis is variable, as X-linked retinoschisis exhibits a high degree of phenotypic variability. Although there is no treatment to halt the progressive maculopathy, clinical management is directed toward treatment of amblyopia and surgical correction of certain complications. X-linked retinoschisis is an important condition to study, both to improve the clinical management of this disorder, and to better understand retinal function and development. Herein, we review the clinical, histopathologic, and molecular genetic and treatment options of X-linked retinoschisis.

Eye Proteins↗

Differentiation of degenerative retinoschisis from retinal detachment using optical coherence tomography.

OBJECTIVE: To assess the potential of optical coherence tomography (OCT) to differentiate retinoschisis from retinal detachment. Optical coherence tomography is a noninvasive, noncontact imaging method that produces high-resolution, cross-sectional images of ocular tissue. DESIGN: Retrospective case series. PARTICIPANTS: Thirteen eyes of 12 patients with the differential diagnosis of retinoschisis versus retinal detachment. METHODS: Differentiation between retinoschisis and retinal detachment was established from both ophthalmoscopic and OCT examinations. MAIN OUTCOME MEASURE: Ability of OCT to differentiate retinoschisis from retinal detachment was measured. RESULTS: Thirteen eyes of 12 patients with retinal elevation were examined with OCT. The cross-sectional view produced by OCT was effective in distinguishing retinoschisis from retinal detachment. Optical coherence tomography images of retinoschisis show a splitting of the neurosensory retina. The OCT images of retinal detachment show separation of full-thickness neurosensory retina from the retinal pigment epithelium band. The OCT images correlated with the clinical impression in all 13 cases. CONCLUSIONS: Based on this series of cases, OCT is a potentially useful new test that may be used to distinguish retinoschisis from rhegmatogenous retinal detachment.

Adult↗