Search PubMedSearch

SEARCH · Search PubMed

Results for “Retinal Degeneration”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 19 recordsLinked to original sources

Novel photoreceptor-specific promoters for gene therapy in mid- to late-stage retinal degeneration.

Inherited retinal degenerations (IRDs) cause progressive photoreceptor loss, leading to vision impairment. Gene therapy using adeno-associated viral (AAV) vectors holds immense promise for treating these conditions. However, achieving optimal gene expression at mid to late stages of retinal degeneration remains challenging due to scarcity of efficient photoreceptor-specific promoters expressed at these disease stages. This study aimed to identify and validate novel promoters capable of robust and specific transgene expression when ≥50% of photoreceptors are lost. Analysis of transcriptomic data from two naturally occurring canine IRD models, laser capture microdissection of retinal cryosections followed by qPCR, and RNA in situ hybridization identified six promising genes with sustained or upregulated expression in photoreceptors in late-stage disease. Upstream cis-regulatory elements of both canine and human orthologs were identified and characterized using in silico analyses and dual-luciferase assays. Short promoters (≤840 base pairs) derived from GNGT2, IMPG2, and PDE6H genes exhibited robust reporter gene expression in photoreceptors when delivered via AAV to the subretinal space of two non-allelic canine IRD models at mid and late disease stages. These findings provide a strategy to enhance AAV-mediated gene therapy by enabling sustained transgene expression in degenerating retinas, improving treatment outcomes for patients with progressive vision loss.

Retinal Degeneration

Biallelic loss-of-function variants in C19orf44 lead to retinal degeneration.

BACKGROUND: Inherited retinal diseases (IRDs) are a group of disorders often resulting in progressive vision loss, ultimately leading to blindness. A significant portion of their genetic causes remain unresolved, partly due to undiscovered disease-associated genes or variants. This study aimed to identify novel genetic links to IRDs. METHODS: All patients underwent comprehensive ophthalmological evaluation, including retinal imaging (fundus autofluorescence and macular optical coherence tomography) and electroretinogram testing. Whole exome sequencing and whole genome sequencing were performed on patients with clinically unsolved IRD, and data were analysed using an in-house pipeline to identify causal variants. Subsequently, Sanger sequencing was performed to confirm identified variants. RESULTS: Three unrelated patients from Europe, Middle East and East Asia were identified with unique late-onset retinal degeneration (Stargardt-like phenotype) associated with biallelic loss-of-function (LoF) variants in C19orf44 (HGNC: 26141), a gene of unknown function. The homozygous variant NM_032207.2:c.549_550del;p.Ser185Profs*2 was identified in two unrelated patients (European and Middle Eastern). Moreover, an East Asian patient had likely compound heterozygous LoF variants (NM_032207.2:c.1168C>T;p.Gln390*/c.976_977del;p.Leu326Lysfs*15). CONCLUSIONS: Our findings establish C19orf44 as a novel disease-causing gene for IRD with Stargardt-like phenotype, expanding the genetic landscape of retinal degeneration.

Humans

Permeability of retinal capillaries in rats with inherited retinal degeneration.

The permeability of retinal capillaries in RCS rats with inherited retinal degeneration was investigated with horseradish peroxidase used as a tracer. Five-week-old rats showed typical degeneration of photoreceptor cells and accumulation of outer segment debris, but retinal capillaries were not permeable to peroxidase. At 10 weeks of age, capillaries in the inner retina appeared normal, but many in the outer retina were leaky. Peroxidase activity in these latter vessels was demonstrable in the basal laminae of endothelial cells and pericytes and in vesicles on the luminal and abluminal sides of the endothelium. Tracer also permeated the intercellular spaces in the surrounding area. The number of leaky capillaries in the outer retina increased during the course of the dystrophy. The site of the leak in permeable capillaries has not yet been established; it may be due to an alteration of the endothelial cell junctions or of transcellular vesicular transport. In the choriocapillaris, peroxidase permeated Bruch's membrane and the basal infoldings between adjacent pigment epithelial cells; tracer progression along the intercellular spaces was blocked at the zonulae occludens at the apicolateral border. The RCS rat may be a useful model for studying the morphological basis of changes in capillary permeability associated with retinal degeneration.

Animals

Primary retinal degeneration: evidence of normal phagocytosis in the retinal pigment epithelium.

In rats with primary retinal degeneration, lens extraction combined with total retinal detachment provided a model for injection of a tracer of colloidal carbon into the subretinal space. Electron microscopy and acid phosphatase cytochemistry were subsequently used to analyze the ingestion of tracer by the retinal pigment epithelium. It was found that the attachment, ingestion, and digestion phases of the phagocytic process were apparently preserved. From this evidence it is suggested that there is no lack of phagocytic power in the retinal pigment epithelium of affected rat strains.

Acid Phosphatase

Complicated colobomatous microphthalmos in the BW rat: a new form of inherited retinal degeneration.

A new model of inherited retinal degeneration has been found in the rat. It is inherited in association with a number of other ocular defects, including microphthalmos, coloboma, retinal dysplasia, optic nerve hypoplasia and/or aplasia, as well as medullation of the nerve fiber layer of the retina. Together, these abnormalities constitute a condition referred to as complicated colobomatous microphthalmos. This condition was originally discovered in the Bmn strain of rats but subsequently transferred to a new genetic background in the Bmn-wys strain of rats (BW). This facilitated the histological evaluation of both the developmental and degenerative ocular defects in the adult animals. A well defined pattern emerged relating eye size, optic nerve size and retinal histology. Normal-sized eyes had normal-sized optic nerves and normal retinal histology while intermediate-sized eyes with no optic nerves had uniformly thin retinas. In contrast, intermediate-sized eyes with small optic nerves had areas of both normal thickness and thin retina. All of these eyes developed retinal degeneration characterized by a late onset and slow progression associated with normal phagocytic activity in the pigment epithelium and a tendency for the rod outer segments to fragment into very thin structures rather than accumulate as lamellar debris. This indicates that the retinal degeneration in the BW model differs in many respects from the well studied RCS model.

Animals

Retinal Proteome Profiling of Inherited Retinal Degeneration Across Three Different Mouse Models Suggests Common Drug Targets in Retinitis Pigmentosa.

Inherited retinal degenerations (IRDs) are a leading cause of blindness among the population of young people in the developed world. Approximately half of IRDs initially manifest as gradual loss of night vision and visual fields, characteristic of retinitis pigmentosa (RP). Due to challenges in genetic testing, and the large heterogeneity of mutations underlying RP, targeted gene therapies are an impractical largescale solution in the foreseeable future. For this reason, identifying key pathophysiological pathways in IRDs that could be targets for mutation-agnostic and disease-modifying therapies (DMTs) is warranted. In this study, we investigated the retinal proteome of three distinct IRD mouse models, in comparison to sex- and age-matched wild-type mice. Specifically, we used the Pde6βRd10 (rd10) and RhoP23H/WT (P23H) mouse models of autosomal recessive and autosomal dominant RP, respectively, as well as the Rpe65-/- mouse model of Leber's congenital amaurosis type 2 (LCA2). The mice were housed at two distinct institutions and analyzed using LC-MS in three separate facilities/instruments following data-dependent and data-independent acquisition modes. This cross-institutional and multi-methodological approach signifies the reliability and reproducibility of the results. The large-scale profiling of the retinal proteome, coupled with in vivo electroretinography recordings, provided us with a reliable basis for comparing the disease phenotypes and severity. Despite evident inflammation, cellular stress, and downscaled phototransduction observed consistently across all three models, the underlying pathologies of RP and LCA2 displayed many differences, sharing only four general KEGG pathways. The opposite is true for the two RP models in which we identify remarkable convergence in proteomic phenotype even though the mechanism of primary rod death in rd10 and P23H mice is different. Our data highlights the cAMP and cGMP second-messenger signaling pathways as potential targets for therapeutic intervention. The proteomic data is curated and made publicly available, facilitating the discovery of universal therapeutic targets for RP.

Animals

Clinical copper metabolism parameters in patients with retinitis pigmentosa and other tapeto-retinal degenerations.

Reports have appeared of abnormal copper metabolism in retinitis pigmentosa, and of a family with vitelliform retinal degeneration in which other members suffered from hepatolenticular degeneration. In the present study 15 patients with retinitis pigmentosa, 4 with various other retinal degenerations, and 1 with a family disposition to retinitis pigmentosa were examined. The copper concentration in serum and the coeruloplasmin concentration in plasma were found to be within normal limits. In 9 of the patients with retinitis pigmentosa the urinary excretion of copper per 24 hours was determined and was found to be normal. The results of the present study lend no support to the hypothesis of abnormal copper metabolism in retinitis pigmentosa.

Adolescent

Electroretinography in pigmented rats with tapeto-retinal degeneration.

We studied tapeto-retinal degeneration in the offspring of Royal College of Surgeons (RCS) and Wistar albino rats. Normal ERG values vary according to skin pigmentation: thresholds and implicit times are different. We believe the best experimental material is to be found in the affected pigmented offspring. Evolution of the degeneration over more than 9 months has been observed before extinction and the expressivity of the disease varies from one individual to another. This animal model closely resembles the ERG findings observed clinically in certain pigmentary degenerations of the retina.

Albinism

Studies of visual function and its decay in mice with hereditary retinal degeneration.

Functional implications of mouse hereditary retinal degeneration have been studied at the level of the superior colliculus and visual cortex in the C57BL/6J-le rd strain. On autoradiography at a light-microscopic level, following eye injection with radioactive compounds, central visual structures appeared normal. A slight reduction in ipsilateral retinal projection was probably related to reduced retinal pigmentation associated with the light ear (le) mutation. In recordings from visual cortex and tectum in rd mice older than five months the cells discharged with highly rhythmic maintained activity. This ongoing activity depended on retinal input, since temporary asphyxia of the eye stopped it immediately. The frequency of the rhythm was influenced by the anesthesia. In these older mice no visual receptive fields could be mapped, but in a few tectal recordings it was possible to suppress the maintained activity by diffuse, very intense illumination. As in normal mice, no auditory or somatosensory responses were observed in the visual cortex or upper tectal layers. In recordings from tectum before the age of three weeks retinotopic topography and receptive fields were normal. By day 24 no receptive fields could be recorded from parts of the tectum representing the central 90--100 degrees of the visual field, whereas within a peripheral ring responses were still roughly normal under photopic conditions. Over the following four months these peripheral responses faded away slowly. Incremental thresholds, especially in the scotopic range, were elevated, rising slowly to unmeasurable values. Similarly during dark adaptation the thresholds fell to values several log units above those reached in normal mice; these values of dark adapted thresholds in rd mice rose with age. This is consistent with morphological changes known to occur in the retina as a consequence, of the rd mutation the rods degenerating before the cones.

Animals

[Evoked visual potentials in tapeto-retinal degeneration].

A study of the behaviour of V.E.P. latencies and amplitudes in 247 eyes suffering from different clinical forms of chorio-retinal degenerations is presented. In 147 eyes the E.R.G. and the V.E.R. were simultaneously recorded, and this group was used for studying the relation ship between E.R.G., V.E.P. and visual acuity. The authors are of the opinion that the V.E.P., in that it investigates particularly the macular region, provides a clinical test of real interest in the prognosis of visual acuity in a known clinical context.

Choroid

Peripapillary pigmentary retinal degeneration.

We studied four patients with peripapillary pigmentary retinal degeneration, an asymptomatic disorder that was probably benign and nonprogressive. The ophthalmoscopic appearance showed a segmental, grayish metallic sheen in association with bone spicule pigmentation, which radiated from the disk along the temporal vessel arcades and joined temporal to the macula. The optic disk, retinal vessels, periphery, and macula were normal in all patients. Visual function tests and fluorescein angiography indicated a segmental disease of the retinal pigment epithelium-photoreceptor complex.

Adult

Visual sensitivity to orientation of rectangles in mice with retinal degeneration.

C3H/HeJ male mice, an inbred strain showing retinal degeneration (rd), and normal-eyed DBA/IJ male mice were studied in a task requiring discrimination of horizontally and vertically oriented rectangles. The apparatus was modified Yerkes discrimination apparatus. The mice were given 30 days of discrimination training, 10 trials/day, after which 10 more trails were given on the 31st day with positive and negative cues reversed. Both strains showed a highly significant decrease in errors during acquisition, the rd strain making significantly fewer errors than the DBA/IJ animals. Reversal of the cues brought about a sharp increase in percentage of errors.

Animals

Retinal degeneration associated with the feeding of dog foods to cats.

Retinal degeneration was observed in cats fed commerical dog food. The retinal degenerative lesions ranged in size from small areas of focal atrophy centered in the area centralis to generalized retinal atrophy. Blindness developed only in cats with generalized retinal atrophy. Analysis of the dog food diets, both dry and canned, revealed that taurine was absent or was present in very low concentrations when compared with control cat food diets. Plasma amino acid analysis also revealed taurine deficiency.

Amino Acids

Generation of a New Immunodeficient Rat Model of Retinal Degeneration With LSL TdTomato Reporter and TdTomato-Pcp2 Expression.

PURPOSE: The purpose of this study was to develop a fluorescently labeled immunodeficient retinal degenerate (RD) rat model for studying photoreceptor degeneration and transplant-host connectivity using the Cre-lox system. METHODS: We developed gene constructs for CAG-LSL-TdTomato (expressing floxed TdTomato) and Pcp2-Cre (marker for ON-bipolar cells) that were injected into rat embryos. The LSL TdTomato reporter strain, created on immunodeficient RhoS334ter-3 rats (RRRC #539), was bred to homozygosity (strain SD-Foxn1rnuTg((Rho-S334X)3,CAG-TdTomato)1010Mjsuc, RRRC #1055, "RNT"). The gene construct Pcp2-Cre was injected into Long-Evans (LE) rat embryos, resulting in two Pcp2-cre founders (strain PCP2 Cre-1105 RKI, "Pcp2"), with targeted and targeted/random insertion of the transgene. F1 offspring were bred to homozygosity and immunodeficiency. To test whether TdTomato expression can be induced in "RNT" rats expressing floxed TdTomato, retinal explants of P9 "RNT" rats were exposed to AAV-PHP.eB-hSyn-myc-Cre (AAV-Syn-Cre) virus. Homozygous rats of both strains ("RNT" and Pcp2-Cre) were crossbred to generate RD TdTomato-Pcp2 ("RTP") rats. Retinas were stained for various retinal markers. GFP-expressing rat retinas were transplanted to 6-week-old "RTP" rats and analyzed after 37 and 77 days. RESULTS: AAV-Syn-Cre induced TdTomato expression in "RNT" retinas. TdTomato-Pcp2 RD rats developed RD similar to the original Rho S334ter-3 rats. Retinas with targeted Pcp2-Cre insertion showed TdTomato in retinal interneurons, overlapping with Pcp2-staining ON bipolar cells, and cones. Retinas with random Pcp2-Cre insertion exhibited additional TdTomato in many other cells. Pcp2-TdTomato expression defined transplant-host boundaries. CONCLUSIONS: We created a unique RD rat model for studying retinal transplant connectivity which can also be used to generate RD rats with other cell-specific labels. TRANSLATIONAL RELEVANCE: This newly created rat is useful for cell therapy and retinal degeneration studies.

Animals

Hereditary retinal degeneration in Drosophila melanogaster. A mutant defect associated with the phototransduction process.

Two genes in Drosophila, rdgA and rdgB, which when defective cause retinal degeneration, were discovered by Hotta and Benzer (Hotta, Y., and S. Benzer. 1970. Proc. Natl, Acad. Sci. U. S, A. 67:1156-1163). These mutants have photoreceptor cells that are histologically normal upon eclosion but subsequently degenerate. The defects in the rdgA and rdgB mutants were localized by the study of genetic mosaics to the photoreceptor cells. In rdgB mutants retinal degeneration is light induced. It can be prevented by rearing the flies in the dark or by blocking the receptor potential with a no-receptor-potential mutation, norpA. Vitamin A deprivation and genetic elimination of the lysosomal enzyme acid phosphatase alsoprotect the photoreceptors of rdgB flies against light-induced damage. The photopigment kinetics of dark-reared rdgB flies appear normal in vitro by spectrophotometric measurements, and in vivo by measurements of the M potential. In normal Drosophila, a 1-s exposure to intense 470-nm light produces a prolonged depolarizing afterpotential (PDA) which can last for several hours. In dark-reared rdgB mutants the PDA lasts less than 2 min;; it appears to initiate the degeneration process, since the photoreceptors become permanently unresponsive after a single such exposure. Another mutant was isolated which prevents degeneration in rdgB flies but which has a normal receptor potential. This suppressor of degeneration is an allele of norpA. It is proposed that the normal norpA gene codes for a product which, when activated, leads to the receptor potential, and which is inactivated by the product of the normal rdgB gene.

Acid Phosphatase

[Changes in the electroretinogram and concentration or rhodopsin in the Hunter strain of rats during development of hereditary retinal degeneration].

Electroretinographic changes as well as rhodopsin content in the isolated retina and the eye cup in Hunter rats were studied during inherited retinal degeneration. The concentration of rhodopsin in the eye cup increases for the first 45 days after birth and then decreases slowly; the visual pigment concentration in the retina reaches its maximum by the 25th day and drops abruptly after the 35th day. The amplitude of the electroretinographic b-wave evoked by near-threshold and saturating stimuli decreases evenly till 35th day. After this day the threshold drastically increases and a-wave disappears. Thus, the 35th day is crucial in the degeneration process. The possible role played by abnormal rhodopsin metabolism in the changes observed is discussed.

Animals