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1.
J Clin Invest ; 134(13)2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38949024

ABSTRACT

Mitochondria-related neurodegenerative diseases have been implicated in the disruption of primary cilia function. Mutation in an intrinsic mitochondrial complex I component NDUFAF2 has been identified in Leigh syndrome, a severe inherited mitochondriopathy. Mutations in ARMC9, which encodes a basal body protein, cause Joubert syndrome, a ciliopathy with defects in the brain, kidney, and eye. Here, we report a mechanistic link between mitochondria metabolism and primary cilia signaling. We discovered that loss of NDUFAF2 caused both mitochondrial and ciliary defects in vitro and in vivo and identified NDUFAF2 as a binding partner for ARMC9. We also found that NDUFAF2 was both necessary and sufficient for cilia formation and that exogenous expression of NDUFAF2 rescued the ciliary and mitochondrial defects observed in cells from patients with known ARMC9 deficiency. NAD+ supplementation restored mitochondrial and ciliary dysfunction in ARMC9-deficient cells and zebrafish and ameliorated the ocular motility and motor deficits of a patient with ARMC9 deficiency. The present results provide a compelling mechanistic link, supported by evidence from human studies, between primary cilia and mitochondrial signaling. Importantly, our findings have significant implications for the development of therapeutic approaches targeting ciliopathies.


Subject(s)
Cilia , Kidney Diseases, Cystic , Leigh Disease , Mitochondria , Zebrafish , Humans , Zebrafish/metabolism , Zebrafish/genetics , Leigh Disease/genetics , Leigh Disease/metabolism , Leigh Disease/pathology , Cilia/metabolism , Cilia/pathology , Cilia/genetics , Animals , Mitochondria/metabolism , Mitochondria/pathology , Mitochondria/genetics , Kidney Diseases, Cystic/genetics , Kidney Diseases, Cystic/metabolism , Kidney Diseases, Cystic/pathology , Electron Transport Complex I/metabolism , Electron Transport Complex I/genetics , Armadillo Domain Proteins/metabolism , Armadillo Domain Proteins/genetics , Retina/metabolism , Retina/pathology , Retina/abnormalities , Eye Abnormalities/genetics , Eye Abnormalities/pathology , Eye Abnormalities/metabolism , Mice , Abnormalities, Multiple/genetics , Abnormalities, Multiple/metabolism , Abnormalities, Multiple/pathology , Cerebellum/metabolism , Cerebellum/pathology , Cerebellum/abnormalities , Mitochondrial Proteins/metabolism , Mitochondrial Proteins/genetics , Zebrafish Proteins/genetics , Zebrafish Proteins/metabolism , Male
2.
Front Endocrinol (Lausanne) ; 15: 1415521, 2024.
Article in English | MEDLINE | ID: mdl-38952394

ABSTRACT

Insulin resistance (IR) is becoming a worldwide medical and public health challenge as an increasing prevalence of obesity and metabolic disorders. Accumulated evidence has demonstrated a strong relationship between IR and a higher incidence of several dramatically vision-threatening retinal diseases, including diabetic retinopathy, age-related macular degeneration, and glaucoma. In this review, we provide a schematic overview of the associations between IR and certain ocular diseases and further explore the possible mechanisms. Although the exact causes explaining these associations have not been fully elucidated, underlying mechanisms of oxidative stress, chronic low-grade inflammation, endothelial dysfunction and vasoconstriction, and neurodegenerative impairments may be involved. Given that IR is a modifiable risk factor, it may be important to identify patients at a high IR level with prompt treatment, which may decrease the risk of developing certain ocular diseases. Additionally, improving IR through the activation of insulin signaling pathways could become a potential therapeutic target.


Subject(s)
Insulin Resistance , Humans , Insulin Resistance/physiology , Retina/metabolism , Retina/pathology , Diabetic Retinopathy/metabolism , Animals , Retinal Diseases/metabolism , Eye Diseases/metabolism , Eye Diseases/etiology , Oxidative Stress/physiology , Macular Degeneration/metabolism , Glaucoma/metabolism , Glaucoma/physiopathology , Risk Factors
3.
FASEB J ; 38(13): e23792, 2024 Jul 15.
Article in English | MEDLINE | ID: mdl-38953555

ABSTRACT

Age-related macular degeneration (AMD) is a common cause of vision loss. The aggressive form of AMD is associated with ocular neovascularization and subretinal fibrosis, representing a responsive outcome against neovascularization mediated by epithelial-mesenchymal transition of retinal pigment epithelium (RPE) cells. A failure of the current treatment (anti-vascular endothelial growth factor therapy) has also been attributed to the progression of subretinal fibrosis. Hypoxia-inducible factors (HIFs) increase gene expressions to promote fibrosis and neovascularization. HIFs act as a central pathway in the pathogenesis of AMD. HIF inhibitors may suppress ocular neovascularization. Nonetheless, further investigation is required to unravel the aspects of subretinal fibrosis. In this study, we used RPE-specific HIFs or von Hippel-Lindau (VHL, a regulator of HIFs) conditional knockout (cKO) mice, along with pharmacological HIF inhibitors, to demonstrate the suppression of subretinal fibrosis. Fibrosis was suppressed by treatments of HIF inhibitors, and similar suppressive effects were detected in RPE-specific Hif1a/Hif2a- and Hif1a-cKO mice. Promotive effects were observed in RPE-specific Vhl-cKO mice, where fibrosis-mediated pathologic processes were evident. Marine products' extracts and their component taurine suppressed fibrosis as HIF inhibitors. Our study shows critical roles of HIFs in the progression of fibrosis, linking them to the potential development of therapeutics for AMD.


Subject(s)
Fibrosis , Mice, Knockout , Retinal Pigment Epithelium , Von Hippel-Lindau Tumor Suppressor Protein , Animals , Mice , Fibrosis/metabolism , Retinal Pigment Epithelium/metabolism , Retinal Pigment Epithelium/pathology , Von Hippel-Lindau Tumor Suppressor Protein/metabolism , Von Hippel-Lindau Tumor Suppressor Protein/genetics , Hypoxia-Inducible Factor 1, alpha Subunit/metabolism , Hypoxia-Inducible Factor 1, alpha Subunit/genetics , Hypoxia-Inducible Factor 1, alpha Subunit/antagonists & inhibitors , Basic Helix-Loop-Helix Transcription Factors/metabolism , Basic Helix-Loop-Helix Transcription Factors/genetics , Basic Helix-Loop-Helix Transcription Factors/antagonists & inhibitors , Macular Degeneration/metabolism , Macular Degeneration/pathology , Macular Degeneration/drug therapy , Retina/metabolism , Retina/pathology , Epithelial-Mesenchymal Transition/drug effects , Mice, Inbred C57BL
4.
Vestn Oftalmol ; 140(3): 59-68, 2024.
Article in Russian | MEDLINE | ID: mdl-38962980

ABSTRACT

Multiple sclerosis (MS) is a chronic autoimmune-inflammatory and neurodegenerative disease. PURPOSE: This study explores the main structural changes in patients with MS and their relationships with the activity and type of disease course. MATERIAL AND METHODS: This prospective study included 159 patients (318 eyes) with an established diagnosis of MS: group (44 eyes; 13.84%) - relapsing-remitting type MS (RRMS) lasting up to 1 year without a history of optic neuritis (ON); group 2 (30 eyes; 9.43%) - RRMS up to 1 year with ON; group 3 (56 eyes; 17.61%) - RRMS lasting from 1 to 10 years without ON; group 4 (38 eyes; 11.95%) - RRMS from 1 to 10 years with ON; group 5 (49 eyes; 15.41%) - RRMS >10 years without ON; group 6 (37 eyes; 11.63%) - RRMS >10 years with ON; group 7 (34 eyes; 10.69%) - secondary progressive multiple sclerosis (SPMS) without ON; group 8 (30 eyes; 9.43%) - SPMS with ON. Patients underwent standard ophthalmological examinations, including optical coherence tomography. RESULTS: A decrease in structural parameters was diagnosed, progressing with the duration of the disease and the presence of ON: the minimum values of mGCL+IPL (65.83±9.14 µm) and mSNFL (76.37±14.77 µm) were detected in the group with SPMS with ON. High inverse correlations of EDSS with mGCL+IPL and mRNFL were demonstrated, with maximum in the group with the longest duration of MS without ON (-0.48 and -0.52 (p=0.01), respectively). CONCLUSION: Changes in the thickness of the structural parameters of the retina, measured by OCT, can be considered as a predictor of the course of MS.


Subject(s)
Multiple Sclerosis , Optic Neuritis , Tomography, Optical Coherence , Humans , Tomography, Optical Coherence/methods , Male , Female , Adult , Multiple Sclerosis/diagnosis , Multiple Sclerosis/diagnostic imaging , Prospective Studies , Middle Aged , Optic Neuritis/diagnosis , Optic Neuritis/etiology , Disease Progression , Retina/diagnostic imaging , Retina/pathology , Reproducibility of Results
5.
Transl Vis Sci Technol ; 13(7): 1, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38949634

ABSTRACT

Purpose: To evaluate the relationships among morphology, fundus autofluorescence (FAF), and retinal sensitivity of photocoagulated lesions more than 1 year after panretinal photocoagulation in patients with proliferative diabetic retinopathy and good vision. Methods: This retrospective cohort study included patients with proliferative diabetic retinopathy who had undergone panretinal photocoagulation more than 1 year ago. The photocoagulated lesions were classified according to FAF levels: group A, no FAF; group B, diffuse FAF; group C, white-dotted centers with diffuse FAF; group D, white-dotted centers without FAF; and group E, controls. The main outcome measures were FAF, retinal sensitivity, and morphology of the photocoagulated lesions. Results: The median sensitivity values and number of photocoagulated lesions in groups A (n = 37), B (n = 39), C (n = 4), D (n = 15), and E (n = 39) were 0 dB, 18.0 dB, 13.9 dB, 0.3 dB, and 21.5 dB, respectively. EZ lines were absent in 93.5%, 18.1%, 50%, 93.3%, and 0% of lesions in groups A, B, C, D, and E, respectively. The inner retinal layer was damaged in 45.2%, 3.0%, 50%, 73.3%, and 0% lesions in groups A, B, C, D, and E, respectively. Statistically significant between-group differences were observed in the retinal sensitivities of the photocoagulated lesions, presence of EZ lines, and damage to the inner retinal layer (p < 0.05). Conclusions: The photoreceptors in most photocoagulated lesions with diffuse FAF retain their morphology and function. Translational Relevance: Using fundus autofluorescence, the damage to photoreceptors after panretinal photocoagulation in patients with diabetes can be estimated in a noninvasive manner. This process can help in determining the need for additional panretinal photocoagulation.


Subject(s)
Diabetic Retinopathy , Retina , Humans , Diabetic Retinopathy/pathology , Diabetic Retinopathy/surgery , Retrospective Studies , Female , Male , Middle Aged , Retina/pathology , Retina/diagnostic imaging , Aged , Visual Acuity/physiology , Fundus Oculi , Fluorescein Angiography/methods , Adult , Laser Coagulation , Optical Imaging/methods
7.
Front Endocrinol (Lausanne) ; 15: 1382777, 2024.
Article in English | MEDLINE | ID: mdl-38948518

ABSTRACT

Background: The concept of the gut-retinal axis proposed by previous scholars primarily focused on the relationship between intestinal microbiota and retinal diseases, and few further expanded the relationship between intestinal diseases and retinal diseases. To further substantiate the concept of the gut-retinal axis, we analyzed inflammatory bowel disease (IBD) and diabetic retinopathy (DR) using Mendelian randomization (MR), and use mediation analysis to further explore the potential substances that influence this causal relationship. Methods: The genome-wide association study's (GWAS) summary statistics for genetic variations were utilized in a Mendelian randomization (MR) investigation. GWAS data on IBD (including ulcerative colitis (UC), Crohn's disease (CD), and IBD) for non-Finnish Europeans (NFE) were sourced from published articles. In contrast, data on DR (including DR and diabetic maculopathy (DMP)) were obtained from FinnGen R9. The causal relationship has been investigated using inverse variance weighted (IVW), MR-Egger, and weighted median and sensitivity analysis was applied to verify the stability of the results. In addition, we applied mediation analysis to investigate whether circulating inflammatory proteins and plasma lipids played a mediating role, and calculated its effect ratio. Results: The causal relationship between IBD and DR was discovered by employing the inverse variance weighted (IVW) method and weighted median method. In forward MR, UC was significantly associated with lower risk of DR (IVW: OR=0.874; 95%CI= 0.835-0.916; P value= 1.28E-08) (Weighted median: OR=0.893; 95%CI= 0.837-0.954; P value= 7.40E-04). In reverse MR, it was shown that DR (IVW: OR=0.870; 95%CI= 0.828-0.914; P value= 2.79E-08)(Weighted median: OR=0.857; 95%CI= 0.801-0.916; P value= 6.40E-06) and DMP (IVW: OR=0.900; 95%CI= 0.865-0.937; P value= 3.34E-07)(Weighted median: OR=0.882; 95%CI= 0.841-0.924; P value= 1.82E-07) could reduce the risk of CD. What's more, DR is associated with a lower risk of IBD according to genetic prediction (IVW: OR=0.922; 95%CI= 0.873-0.972; P value= 0.002) (Weighted median: OR=0.924; 95%CI= 0.861-0.992; P value= 0.029). Fibroblast growth factor 21 (FGF21), phosphatidylcholine (PC), and triacylglycerol (TG) serve as mediators in these relationships. Conclusions: Our research offers novel insights and sources for investigating the gut-retina axis in the genetic relationship between IBD and DR. We discover four mediators and more about the association between the intestine and retinal disorders and provide more evidence for the gut-retinal axis theory.


Subject(s)
Diabetic Retinopathy , Genome-Wide Association Study , Inflammatory Bowel Diseases , Mendelian Randomization Analysis , Humans , Diabetic Retinopathy/genetics , Diabetic Retinopathy/epidemiology , Inflammatory Bowel Diseases/genetics , Inflammatory Bowel Diseases/epidemiology , Inflammatory Bowel Diseases/complications , Mediation Analysis , Retina/metabolism , Retina/pathology , Polymorphism, Single Nucleotide , Gastrointestinal Microbiome
8.
Cell Biol Toxicol ; 40(1): 53, 2024 Jul 06.
Article in English | MEDLINE | ID: mdl-38970639

ABSTRACT

Diabetic retinopathy (DR), a significant and vision-endangering complication associated with diabetes mellitus, constitutes a substantial portion of acquired instances of preventable blindness. The progression of DR appears to prominently feature the loss of retinal cells, encompassing neural retinal cells, pericytes, and endothelial cells. Therefore, mitigating the apoptosis of retinal cells in DR could potentially enhance the therapeutic approach for managing the condition by suppressing retinal vascular leakage. Recent advancements have highlighted the crucial regulatory roles played by non-coding RNAs (ncRNAs) in diverse biological processes. Recent advancements have highlighted that non-coding RNAs (ncRNAs), including microRNAs (miRNAs), circular RNAs (circRNAs), and long non-coding RNAs (lncRNAs), act as central regulators in a wide array of biogenesis and biological functions, exerting control over gene expression associated with histogenesis and cellular differentiation within ocular tissues. Abnormal expression and activity of ncRNAs has been linked to the regulation of diverse cellular functions such as apoptosis, and proliferation. This implies a potential involvement of ncRNAs in the development of DR. Notably, ncRNAs and apoptosis exhibit reciprocal regulatory interactions, jointly influencing the destiny of retinal cells. Consequently, a thorough investigation into the complex relationship between apoptosis and ncRNAs is crucial for developing effective therapeutic and preventative strategies for DR. This review provides a fundamental comprehension of the apoptotic signaling pathways associated with DR. It then delves into the mutual relationship between apoptosis and ncRNAs in the context of DR pathogenesis. This study advances our understanding of the pathophysiology of DR and paves the way for the development of novel therapeutic strategies.


Subject(s)
Apoptosis , Diabetic Retinopathy , RNA, Untranslated , Signal Transduction , Diabetic Retinopathy/genetics , Diabetic Retinopathy/metabolism , Diabetic Retinopathy/therapy , Humans , Apoptosis/genetics , Signal Transduction/genetics , Animals , RNA, Untranslated/genetics , RNA, Untranslated/metabolism , MicroRNAs/genetics , MicroRNAs/metabolism , RNA, Long Noncoding/genetics , RNA, Long Noncoding/metabolism , RNA, Circular/genetics , RNA, Circular/metabolism , Retina/metabolism , Retina/pathology
9.
Sci Rep ; 14(1): 14332, 2024 06 21.
Article in English | MEDLINE | ID: mdl-38906973

ABSTRACT

Spinocerebellar ataxia type 7 (SCA7) is a progressive neurodegenerative disorder resulting from abnormal expansion of an uninterrupted polyglutamine (polyQ) repeat in its disease protein, ataxin-7 (ATXN7). ATXN7 is part of Spt-Ada-Gcn5 acetyltransferase (SAGA), an evolutionarily conserved transcriptional coactivation complex with critical roles in chromatin remodeling, cell signaling, neurodifferentiation, mitochondrial health and autophagy. SCA7 is dominantly inherited and characterized by genetic anticipation and high repeat-length instability. Patients with SCA7 experience progressive ataxia, atrophy, spasticity, and blindness. There is currently no cure for SCA7, and therapies are aimed at alleviating symptoms to increase quality of life. Here, we report novel Drosophila lines of SCA7 with polyQ repeats in wild-type and human disease patient range. We find that ATXN7 expression has age- and polyQ repeat length-dependent reduction in fruit fly survival and retinal instability, concomitant with increased ATXN7 protein aggregation. These new lines will provide important insight on disease progression that can be used in the future to identify therapeutic targets for SCA7 patients.


Subject(s)
Ataxin-7 , Disease Models, Animal , Peptides , Spinocerebellar Ataxias , Animals , Spinocerebellar Ataxias/genetics , Spinocerebellar Ataxias/pathology , Spinocerebellar Ataxias/metabolism , Ataxin-7/genetics , Ataxin-7/metabolism , Humans , Peptides/metabolism , Peptides/genetics , Drosophila/genetics , Animals, Genetically Modified , Disease Progression , Drosophila melanogaster/genetics , Retina/metabolism , Retina/pathology , Drosophila Proteins/genetics , Drosophila Proteins/metabolism
10.
Neurol Neuroimmunol Neuroinflamm ; 11(5): e200273, 2024 Sep.
Article in English | MEDLINE | ID: mdl-38941573

ABSTRACT

BACKGROUND AND OBJECTIVES: To systematically describe the clinical picture of double-antibody seronegative neuromyelitis optica spectrum disorders (DN-NMOSD) with specific emphasis on retinal involvement. METHODS: Cross-sectional data of 25 people with DN-NMOSD (48 eyes) with and without a history of optic neuritis (ON) were included in this study along with data from 25 people with aquaporin-4 antibody seropositive neuromyelitis optica spectrum disorder (AQP4-NMOSD, 46 eyes) and from 25 healthy controls (HCs, 49 eyes) for comparison. All groups were matched for age and sex and included from the collaborative retrospective study of retinal optical coherence tomography (OCT) in neuromyelitis optica (CROCTINO). Participants underwent OCT with central postprocessing and local neurologic examination and antibody testing. Retinal neurodegeneration was quantified as peripapillary retinal nerve fiber layer thickness (pRNFL) and combined ganglion cell and inner plexiform layer thickness (GCIPL). RESULTS: This DN-NMOSD cohort had a history of [median (inter-quartile range)] 6 (5; 9) attacks within their 5 ± 4 years since onset. Myelitis and ON were the most common attack types. In DN-NMOSD eyes after ON, pRNFL (p < 0.001) and GCIPL (p = 0.023) were thinner compared with eyes of HCs. Even after only one ON episode, DN-NMOSD eyes already had considerable neuroaxonal loss compared with HCs. In DN-NMOSD eyes without a history of ON, pRNFL (p = 0.027) and GCIPL (p = 0.022) were also reduced compared with eyes of HCs. However, there was no difference in pRNFL and GCIPL between DN-NMOSD and AQP4-NMOSD for the whole group and for subsets with a history of ON and without a history of ON-as well as between variances of retinal layer thicknesses. DISCUSSION: DN-NMOSD is characterized by severe retinal damage after ON and attack-independent retinal neurodegeneration. Most of the damage occurs during the first ON episode, which highlights the need for better diagnostic markers in DN-NMOSD to facilitate an earlier diagnosis as well as for effective and early treatments. In this study, people with DN-NMOSD presented with homogeneous clinical and imaging findings potentially suggesting a common retinal pathology in these patients.


Subject(s)
Aquaporin 4 , Neuromyelitis Optica , Tomography, Optical Coherence , Humans , Neuromyelitis Optica/diagnostic imaging , Neuromyelitis Optica/immunology , Neuromyelitis Optica/blood , Female , Male , Adult , Cross-Sectional Studies , Middle Aged , Aquaporin 4/immunology , Retrospective Studies , Autoantibodies/blood , Retina/diagnostic imaging , Retina/pathology , Retina/immunology
11.
Neurol Neuroimmunol Neuroinflamm ; 11(5): e200269, 2024 Sep.
Article in English | MEDLINE | ID: mdl-38941572

ABSTRACT

BACKGROUND AND OBJECTIVES: Retinal optical coherence tomography (OCT) provides promising prognostic imaging biomarkers for future disease activity in multiple sclerosis (MS). However, raw OCT-derived measures have multiple dependencies, supporting the need for establishing reference values adjusted for possible confounders. The purpose of this study was to investigate the capacity for age-adjusted z scores of OCT-derived measures to prognosticate future disease activity and disability worsening in people with MS (PwMS). METHODS: We established age-adjusted OCT reference data using generalized additive models for location, scale, and shape for peripapillary retinal nerve fiber layer (pRNFL) and ganglion cell-inner plexiform layer (GCIP) thicknesses, involving 910 and 423 healthy eyes, respectively. Next, we transformed the retinal layer thickness of PwMS from 3 published studies into age-adjusted z scores (pRNFL-z and GCIP-z) based on the reference data. Finally, we investigated the association of pRNFL-z or GCIP-z as predictors with future confirmed disability worsening (Expanded Disability Status Scale score increase) or disease activity (failing of the no evidence of disease activity [NEDA-3] criteria) as outcomes. Cox proportional hazards models or logistic regression analyses were applied according to the original studies. Optimal cutoffs were identified using the Akaike information criterion as well as location with the log-rank and likelihood-ratio tests. RESULTS: In the first cohort (n = 863), 172 PwMS (24%) had disability worsening over a median observational period of 2.0 (interquartile range [IQR]:1.0-3.0) years. Low pRNFL-z (≤-2.04) were associated with an increased risk of disability worsening (adjusted hazard ratio (aHR) [95% CI] = 2.08 [1.47-2.95], p = 3.82e-5). In the second cohort (n = 170), logistic regression analyses revealed that lower pRNFL-z showed a higher likelihood for disability accumulation at the two-year follow-up (reciprocal odds ratio [95% CI] = 1.51[1.06-2.15], p = 0.03). In the third cohort (n = 78), 46 PwMS (59%) did not maintain the NEDA-3 status over a median follow-up of 2.0 (IQR: 1.9-2.1) years. PwMS with low GCIP-z (≤-1.03) had a higher risk of showing disease activity (aHR [95% CI] = 2.14 [1.03-4.43], p = 0.04). Compared with raw values with arbitrary cutoffs, applying the z score approach with optimal cutoffs showed better performance in discrimination and calibration (higher Harrell's concordance index and lower integrated Brier score). DISCUSSION: In conclusion, our work demonstrated reference cohort-based z scores that account for age, a major driver for disease progression in MS, to be a promising approach for creating OCT-derived measures useable across devices and toward individualized prognostication.


Subject(s)
Disease Progression , Multiple Sclerosis , Tomography, Optical Coherence , Humans , Female , Male , Adult , Middle Aged , Prognosis , Multiple Sclerosis/physiopathology , Multiple Sclerosis/diagnostic imaging , Retina/diagnostic imaging , Retina/pathology , Retina/physiopathology , Severity of Illness Index
12.
Genes (Basel) ; 15(6)2024 May 28.
Article in English | MEDLINE | ID: mdl-38927641

ABSTRACT

Inherited retinal diseases (IRDs) are a large group of genetically and clinically diverse blinding eye conditions that result in progressive and irreversible photoreceptor degeneration and vision loss. To date, no cures have been found, although strides toward treatments for specific IRDs have been made in recent years. To accelerate treatment discovery, retinal organoids provide an ideal human IRD model. This review aims to give background on the development and importance of retinal organoids for the human-based in vitro study of the retina and human retinogenesis and retinal pathologies. From there, we explore retinal pathologies in the context of IRDs and the current landscape of IRD treatment discovery. We discuss the usefulness of retinal organoids in this context (as a patient-derived cell model for IRDs) to precisely understand the pathogenesis and potential mechanisms behind a specific IRD-causing variant of interest. Finally, we discuss the importance and promise of retinal organoids in treatment discovery for IRDs, now and in the future.


Subject(s)
Organoids , Retina , Retinal Diseases , Humans , Retinal Diseases/genetics , Retinal Diseases/pathology , Retina/metabolism , Retina/pathology , Animals
13.
Genes (Basel) ; 15(6)2024 Jun 11.
Article in English | MEDLINE | ID: mdl-38927698

ABSTRACT

The retinal features of Bardet-Biedl syndrome (BBS) are insufficiently characterized in Arab populations. This retrospective study investigated the retinal features and genotypes of BBS in Saudi patients managed at a single tertiary eye care center. Data analysis of the identified 46 individuals from 31 families included visual acuity (VA), systemic manifestations, multimodal retinal imaging, electroretinography (ERG), family pedigrees, and genotypes. Patients were classified to have cone-rod, rod-cone, or generalized photoreceptor dystrophy based on the pattern of macular involvement on the retinal imaging. Results showed that nyctalopia and subnormal VA were the most common symptoms with 76% having VA ≤ 20/200 at the last visit (age: 5-35). Systemic features included obesity 91%, polydactyly 56.5%, and severe cognitive impairment 33%. The predominant retinal phenotype was cone-rod dystrophy 75%, 10% had rod-cone dystrophy and 15% had generalized photoreceptor dystrophy. ERGs were undetectable in 95% of patients. Among the 31 probands, 61% had biallelic variants in BBSome complex genes, 32% in chaperonin complex genes, and 6% had biallelic variants in ARL6; including six previously unreported variants. Interfamilial and intrafamilial variabilities were noted, without a clear genotype-phenotype correlation. Most BBS patients had advanced retinopathy and were legally blind by early adulthood, indicating a narrow therapeutic window for rescue strategies.


Subject(s)
Bardet-Biedl Syndrome , Mutation , Humans , Bardet-Biedl Syndrome/genetics , Male , Saudi Arabia/epidemiology , Female , Child , Adolescent , Adult , Child, Preschool , Young Adult , Pedigree , Retrospective Studies , Electroretinography , Phenotype , Visual Acuity , Retina/pathology , ADP-Ribosylation Factors
14.
Int J Mol Sci ; 25(12)2024 Jun 13.
Article in English | MEDLINE | ID: mdl-38928220

ABSTRACT

We hypothesize that the injection of JP4-039, a mitochondria-targeted nitroxide, prior to irradiation of the mouse retina may decrease apoptosis and reduce neutrophil and macrophage migration into the retina. In our study, we aimed to examine the effects of JP4-039 in the mouse retina using fluorescent microscopy, a terminal deoxynucleotidyl transferase dUTP nick end labeling (TUNEL) assay, and flow cytometry. Forty-five mice and one eye per mouse were used. In Group 1, fluorescent microscopy was used to determine retinal uptake of 10 µL (0.004 mg/µL) of intravitreally injected BODIPY-labeled JP4-039 at 0, 15, and 60 min after injection. In Group 2, the TUNEL assay was performed to investigate the rate of apoptosis after irradiation in addition to JP4-039 injection, compared to controls. In Group 3, flow cytometry was used to determine the extent of inflammatory cell migration into the retina after irradiation in addition to JP4-039 injection, compared to controls. Maximal retinal uptake of JP4-039 was 15 min after intravitreal injection (p < 0.0001). JP4-039-treated eyes had lower levels of retinal apoptosis (35.8 ± 2.5%) than irradiated controls (49.0 ± 2.7%; p = 0.0066) and demonstrated reduced migration of N1 cells (30.7 ± 11.7% vs. 77.7 ± 5.3% controls; p = 0.004) and M1 cells (76.6 ± 4.2 vs. 88.1 ± 3.7% controls, p = 0.04). Pretreatment with intravitreally injected JP4-039 reduced apoptosis and inflammatory cell migration in the irradiated mouse retina, marking the first confirmed effect of this molecule in retinal tissue. Further studies may allow for safety profiling and potential use for patients with radiation retinopathy.


Subject(s)
Apoptosis , Cell Movement , Mitochondria , Retina , Animals , Apoptosis/drug effects , Apoptosis/radiation effects , Mice , Retina/drug effects , Retina/metabolism , Retina/radiation effects , Retina/pathology , Mitochondria/metabolism , Mitochondria/drug effects , Mitochondria/radiation effects , Cell Movement/drug effects , Cell Movement/radiation effects , Mice, Inbred C57BL , Male , Nitrogen Oxides/pharmacology , Inflammation/pathology
15.
Invest Ophthalmol Vis Sci ; 65(6): 32, 2024 Jun 03.
Article in English | MEDLINE | ID: mdl-38904640

ABSTRACT

Purpose: Interphotoreceptor retinoid-binding protein's (IRBP) role in eye growth and its involvement in cell homeostasis remain poorly understood. One hypothesis proposes early conditional deletion of the IRBP gene could lead to a myopic response with retinal degeneration, whereas late conditional deletion (after eye size is determined) could cause retinal degeneration without myopia. Here, we sought to understand if prior myopia was required for subsequent retinal degeneration in the absence of IRBP. This study investigates if any cell type or developmental stage is more important in myopia or retinal degeneration. Methods: IBRPfl/fl mice were bred with 5 Cre-driver lines: HRGP-Cre, Chx10-Cre, Rho-iCre75, HRGP-Cre Rho-iCre75, and Rx-Cre. Mice were analyzed for IRBP gene expression through digital droplet PCR (ddPCR). Young adult (P30) mice were tested for retinal degeneration and morphology using spectral-domain optical coherence tomography (SD-OCT) and hematoxylin and eosin (H&E) staining. Function was analyzed using electroretinograms (ERGs). Eye sizes and axial lengths were compared through external eye measurements and whole eye biometry. Results: Across all outcome measures, when bred to IRBPfl/fl, HRGP-Cre and Chx10-Cre lines showed no differences from IRBPfl/fl alone. With the Rho-iCre75 line, small but significant reductions were seen in retinal thickness with SD-OCT imaging and postmortem H&E staining without increased axial length. Both the HRGP-Cre+Rho-iCre75 and the Rx-Cre lines showed significant decreases in retinal thickness and outer nuclear layer cell counts. Using external eye measurements and SD-OCT imaging, both lines showed an increase in eye size. Finally, function in both lines was roughly halved across scotopic, photopic, and flicker ERGs. Conclusions: Our studies support hypotheses that for both eye size determination and retinal homeostasis, there are two critical timing windows when IRBP must be expressed in rods or cones to prevent myopia (P7-P12) and degeneration (P21 and later). The rod-specific IRBP knockout (Rho-iCre75) showed significant retinal functional losses without myopia, indicating that the two phenotypes are independent. IRBP is needed for early development of photoreceptors and eye size, whereas Rho-iCre75 IRBPfl/fl knockout results in retinal degeneration without myopia.


Subject(s)
Disease Models, Animal , Electroretinography , Eye Proteins , Mice, Knockout , Myopia , Retinal Degeneration , Retinol-Binding Proteins , Tomography, Optical Coherence , Animals , Mice , Eye Proteins/genetics , Eye Proteins/metabolism , Mice, Inbred C57BL , Myopia/genetics , Myopia/metabolism , Myopia/physiopathology , Retina/metabolism , Retina/pathology , Retinal Degeneration/genetics , Retinal Degeneration/metabolism , Retinal Degeneration/physiopathology , Retinol-Binding Proteins/genetics , Male , Female
16.
Cells ; 13(12)2024 Jun 08.
Article in English | MEDLINE | ID: mdl-38920637

ABSTRACT

Excessive levels of glutamate activity could potentially damage and kill neurons. Glutamate excitotoxicity is thought to play a critical role in many CNS and retinal diseases. Accordingly, glutamate excitotoxicity has been used as a model to study neuronal diseases. Immune proteins, such as major histocompatibility complex (MHC) class I molecules and their receptors, play important roles in many neuronal diseases, while T-cell receptors (TCR) are the primary receptors of MHCI. We previously showed that a critical component of TCR, CD3ζ, is expressed by mouse retinal ganglion cells (RGCs). The mutation of CD3ζ or MHCI molecules compromises the development of RGC structure and function. In this study, we investigated whether CD3ζ-mediated molecular signaling regulates RGC death in glutamate excitotoxicity. We show that mutation of CD3ζ significantly increased RGC survival in NMDA-induced excitotoxicity. In addition, we found that several downstream molecules of TCR, including Src (proto-oncogene tyrosine-protein kinase) family kinases (SFKs) and spleen tyrosine kinase (Syk), are expressed by RGCs. Selective inhibition of an SFK member, Hck, or Syk members, Syk or Zap70, significantly increased RGC survival in NMDA-induced excitotoxicity. These results provide direct evidence to reveal the underlying molecular mechanisms that control RGC death under disease conditions.


Subject(s)
CD3 Complex , Glutamic Acid , Retinal Ganglion Cells , Signal Transduction , Retinal Ganglion Cells/metabolism , Retinal Ganglion Cells/drug effects , Retinal Ganglion Cells/pathology , Animals , Glutamic Acid/metabolism , Signal Transduction/drug effects , CD3 Complex/metabolism , Mice , Mice, Inbred C57BL , N-Methylaspartate/toxicity , Cell Survival/drug effects , Retina/metabolism , Retina/pathology , src-Family Kinases/metabolism , Syk Kinase/metabolism
17.
J Neuroinflammation ; 21(1): 162, 2024 Jun 24.
Article in English | MEDLINE | ID: mdl-38915029

ABSTRACT

Radiation retinopathy (RR) is a major side effect of ocular tumor treatment by plaque brachytherapy or proton beam therapy. RR manifests as delayed and progressive microvasculopathy, ischemia and macular edema, ultimately leading to vision loss, neovascular glaucoma, and, in extreme cases, secondary enucleation. Intravitreal anti-VEGF agents, steroids and laser photocoagulation have limited effects on RR. The role of retinal inflammation and its contribution to the microvascular damage occurring in RR remain incompletely understood. To explore cellular and vascular events after irradiation, we analyzed their time course at 1 week, 1 month and 6 months after rat eyes received 45 Gy X-beam photons. Müller glial cells, astrocytes and microglia were rapidly activated, and these markers of retinal inflammation persisted for 6 months after irradiation. This was accompanied by early cell death in the outer retina, which persisted at later time points, leading to retinal thinning. A delayed loss of small retinal capillaries and retinal hypoxia were observed after 6 months, indicating inner blood‒retinal barrier (BRB) alteration but without cell death in the inner retina. Moreover, activated microglial cells invaded the entire retina and surrounded retinal vessels, suggesting the role of inflammation in vascular alteration and in retinal cell death. Radiation also triggered early and persistent invasion of the retinal pigment epithelium by microglia and macrophages, contributing to outer BRB disruption. This study highlights the role of progressive and long-lasting inflammatory mechanisms in RR development and demonstrates the relevance of this rat model to investigate human pathology.


Subject(s)
Disease Models, Animal , Retina , Animals , Rats , Retina/pathology , Retina/radiation effects , Retinal Diseases/etiology , Retinal Diseases/pathology , Inflammation/pathology , Inflammation/etiology , Radiation Injuries, Experimental/pathology , Radiation Injuries/pathology , Radiation Injuries/etiology , Male , Microglia/radiation effects , Microglia/pathology
18.
J Cell Sci ; 137(13)2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38841887

ABSTRACT

Centrosomal proteins play pivotal roles in orchestrating microtubule dynamics, and their dysregulation leads to disorders, including cancer and ciliopathies. Understanding the multifaceted roles of centrosomal proteins is vital to comprehend their involvement in disease development. Here, we report novel cellular functions of CEP41, a centrosomal and ciliary protein implicated in Joubert syndrome. We show that CEP41 is an essential microtubule-associated protein with microtubule-stabilizing activity. Purified CEP41 binds to preformed microtubules, promotes microtubule nucleation and suppresses microtubule disassembly. When overexpressed in cultured cells, CEP41 localizes to microtubules and promotes microtubule bundling. Conversely, shRNA-mediated knockdown of CEP41 disrupts the interphase microtubule network and delays microtubule reassembly, emphasizing its role in microtubule organization. Further, we demonstrate that the association of CEP41 with microtubules relies on its conserved rhodanese homology domain (RHOD) and the N-terminal region. Interestingly, a disease-causing mutation in the RHOD domain impairs CEP41-microtubule interaction. Moreover, depletion of CEP41 inhibits cell proliferation and disrupts cell cycle progression, suggesting its potential involvement in cell cycle regulation. These insights into the cellular functions of CEP41 hold promise for unraveling the impact of its mutations in ciliopathies.


Subject(s)
Cell Proliferation , Microtubules , Humans , Microtubules/metabolism , Microtubule-Associated Proteins/metabolism , Microtubule-Associated Proteins/genetics , Centrosome/metabolism , Retina/metabolism , Retina/pathology , Retina/abnormalities , Ciliopathies/metabolism , Ciliopathies/genetics , Ciliopathies/pathology , Cerebellum/metabolism , Cerebellum/abnormalities , Cerebellum/pathology , Kidney Diseases, Cystic/metabolism , Kidney Diseases, Cystic/genetics , Kidney Diseases, Cystic/pathology , Cilia/metabolism , Cilia/pathology , Cell Cycle Proteins/metabolism , Cell Cycle Proteins/genetics , Animals , Abnormalities, Multiple/metabolism , Abnormalities, Multiple/genetics , Abnormalities, Multiple/pathology , Eye Abnormalities/metabolism , Eye Abnormalities/genetics , Eye Abnormalities/pathology , Protein Binding , Cell Cycle/genetics , HEK293 Cells
19.
Acta Vet Hung ; 72(2): 80-98, 2024 Jul 03.
Article in English | MEDLINE | ID: mdl-38916958

ABSTRACT

The aim of the study was to characterize retinal atrophy (RA) with progressive retinal atrophy symptoms in mixed breed dogs using ophthalmoscopy, spectral domain optical coherence tomography (SD-OCT) and electroretinography (ERG).The study was performed on 13 mixed breed dogs affected by retinal atrophy (11 males and 2 females that were 1.5-14 years old). Depending on the advancement of RA, SD-OCT examinations identified retinal abnormalities ranging from layer disorganisation to advanced atrophy. The most advanced RA occurred ventral to the optic disc. Total retinal thickness in both eyes (mean ± SD) was lower in dogs with RA compared to controls dorsally (77.7 ± 39.5 µm vs 173.5 ± 13.3 µm), ventrally (33.4 ± 29.9 µm vs 139.5 ± 10.8 µm), nasally (65.0 ± 34.5 µm vs 163.9 ± 11.0 µm) and temporally (61.8 ± 41.7 µm vs 171.9 ± 11.1 µm) to the optic disc. In dogs with locally normal architecture of inner retina, loss of definition of outer retinal layers occurred in many regions. Dark and light-adapted ERGs were reduced in 2 dogs with RA and were unrecordable in 11 dogs. Lesions evident in SD-OCT scans of mixed breed dogs affected with retinal atrophy initially appear ventrally to the optic disc and ventro-dorsally in advanced RA. In all mixed breed dogs with retinal atrophy, clinical signs and SD-OCT results correlate with ERG findings.


Subject(s)
Dog Diseases , Electroretinography , Tomography, Optical Coherence , Animals , Dogs , Tomography, Optical Coherence/veterinary , Dog Diseases/diagnostic imaging , Dog Diseases/pathology , Female , Electroretinography/veterinary , Male , Retina/diagnostic imaging , Retina/pathology , Retinal Diseases/veterinary , Retinal Diseases/diagnostic imaging , Retinal Diseases/pathology , Atrophy/veterinary
20.
In Vivo ; 38(4): 1609-1620, 2024.
Article in English | MEDLINE | ID: mdl-38936912

ABSTRACT

BACKGROUND/AIM: Diabetic retinopathy is a leading cause of blindness worldwide, characterized by neurovascular dysfunction. This study aimed to investigate the impact of brimonidine, a selective adrenoceptor agonist, on diabetic retinal neurodegeneration, recognizing the critical role of neurodegeneration in diabetic retinopathy. MATERIALS AND METHODS: Streptozotocin-induced diabetes was established in adult male Sprague-Dawley rats to mimic diabetic retinopathy. Rats, except non-diabetic control rats, received topical applications of 0.15% brimonidine tartrate (treatment group) or balanced salt solution (diabetic control group) twice daily following diabetes induction. Each group comprised six randomly assigned animals. Retinal samples were analyzed using immunofluorescence staining, apoptosis assay, and western blot. RESULTS: Topical brimonidine treatment reduced apoptosis of retinal ganglion cells at 8 weeks after induction of diabetes (p<0.05). Glial activation induced by diabetes was reduced by brimonidine treatment. Immunoblot and immunofluorescence assay revealed that the decrease in phospho- protein kinase B (AKT) level resulting from diabetes was also attenuated by brimonidine (p<0.05). Furthermore, brimonidine alleviated the decrease in anti-apoptotic proteins [BCL2 apoptosis regulator (BCL2) and BCL-xl] induced by diabetes (p<0.05). Elevation of phospho-p38 mitogen-activated protein kinase (p38MAPK) and p53 in diabetic rats were reduced by brimonidine (p<0.05). Additionally, brimonidine treatment attenuated the upregulation of the pro-apoptotic molecule BCL-2 associated X in retinas of diabetic rats (p<0.05). CONCLUSION: These findings suggest that topical brimonidine treatment may protect retinal ganglion cells in experimental diabetes by modulating the AKT pathway and reducing pro-apoptotic p38MAPK levels. This presents a potential neuroprotective approach in diabetes, offering the advantage of localized treatment without the added burden of oral medication.


Subject(s)
Apoptosis , Brimonidine Tartrate , Diabetes Mellitus, Experimental , Diabetic Retinopathy , Neuroprotective Agents , Retinal Ganglion Cells , Animals , Diabetic Retinopathy/drug therapy , Diabetic Retinopathy/pathology , Brimonidine Tartrate/pharmacology , Brimonidine Tartrate/administration & dosage , Neuroprotective Agents/pharmacology , Neuroprotective Agents/administration & dosage , Rats , Apoptosis/drug effects , Diabetes Mellitus, Experimental/drug therapy , Diabetes Mellitus, Experimental/complications , Male , Retinal Ganglion Cells/drug effects , Retinal Ganglion Cells/pathology , Retinal Ganglion Cells/metabolism , Administration, Topical , Disease Models, Animal , Rats, Sprague-Dawley , Proto-Oncogene Proteins c-akt/metabolism , Retina/drug effects , Retina/metabolism , Retina/pathology
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