1.Intravitreal Conbercept injection for different types of macular edema in retinal vein occlusion
Jiarui XUE ; Xiaoping QIAN ; Jinghong DONG ; Changfan WU
International Eye Science 2026;26(3):361-367
AIM:To analyze the effect of conbercept treatment on different types of macular edema secondary to retinal vein occlusion(RVO-ME)using optical coherence tomography(OCT)images.METHODS: This retrospective study included patients who first received conbercept injections for RVO-ME at Yijishan Hospital of Wannan Medical College from December 1, 2017, to March 31, 2022. Data on disease duration, age, hypertension, OCT images, central macular thickness(CMT), and best-corrected visual acuity(BCVA)were collected before and at 4-6 wk after treatment. Patients were divided into 4 groups according to different types of macular edema: cystoid macular edema(CME), sponge-like diffuse retinal thickening(SDRT), serous retinal detachment(SRD), and mixed type(FULL). Changes in CMT and visual acuity before and after treatment were compared among the groups to analyze differences in the effect of conbercept treatment on different ME types, and the effect of baseline CMT and visual acuity on post-treatment visual acuity.RESULTS: Totally 139 patients(139 eyes)were classified as having macular edema, including 62 males(44.6%)and 77 females(55.4%), with a mean age of 58.9±10.9 years, and they were divided into 4 groups based on different types of macular edema, including 54 cases(54 eyes)(mean age 59.6±11.1 years)in the CME group, 23 cases(23 eyes; mean age 56.6±10.2 years)in the SDRT group, 22 cases(22 eyes; mean age 57.8±12.0 years)in the SDR group, and 40 cases(40 eyes; mean age 60.0±10.7 years)in the FULL group. There were no significant differences in the duration of disease or age between groups(P>0.05). There was a significant difference in preoperative CMT between groups(P=0.01, one-way ANOVA), with the CMT in the FULL group being significantly greater than that in the SDRT group(P=0.03). There were no significant differences in pre-treatment visual acuity between the four groups(P=0.26). After conbercept treatment, the macular central recess thickness was reduced and visual acuity was improved in all four groups, among which the CMT in the CME and FULL groups was reduced significantly compared with the other two groups(P<0.05), and the visual acuity in the CME and SRD groups was improved significantly compared with the other two groups(P<0.05). Postoperative visual acuity was negatively correlated with preoperative CMT(P=0.044)and positively correlated with preoperative visual acuity(P<0.01).CONCLUSION:The efficacy of intravitreal conbercept in the treatment of RVO and macular edema may be related to the type of edema observed on OCT images, in which the efficacy is best in patients with CME but poor in patients with SDRT.
2.Fibroblast growth factor 21 attenuates oxidative stress injury in retinal pigment epithelial cells under high glucose via FGFR1/PI3K/Akt signal pathway
Ye TIAN ; Guoheng ZHANG ; Tianhao YUAN ; Xin WANG ; Tianfang CHANG ; Yuan CHEN ; Guorui DOU
International Eye Science 2026;26(3):383-390
AIM:To investigate the effect of fibroblast growth factor 21(FGF21)on high glucose-induced oxidative stress in retinal pigment epithelial(RPE)cells and to clarify the underlying molecular mechanisms.METHODS:Single-cell sequencing data from the GEO database were analyzed to determine the expression profile of the FGF21 receptor FGFR1 in RPE cells. Human ARPE-19 cells were cultured and randomly assigned to control, high glucose(30 mmol/L), and high glucose+FGF21 analog treatment groups, with additional siFGFR1 and PI3K inhibitor groups. Cell viability in different treatment groups was assessed using CCK-8 assay, intracellular reactive oxygen species(ROS)levels were quantified using DCFH-DA fluorescent probing combined with immunofluorescence staining and flow cytometry. Transcriptome sequencing was performed on cells from the high glucose group and high glucose+FGF21 group to analyze the enrichment level of the PI3K/Akt signaling pathway. Western blotting was performed to detect phosphorylation levels of PI3K/Akt pathway components.RESULTS:Single-cell sequencing revealed specific expression of FGFR1 in RPE cells of retinal tissues from diabetic model mice. Under In vitro experiments, high glucose(30 mmol/L)exposure reduced ARPE-19 cell viability by 49.7% and increased ROS levels by approximately 2-fold. Whereas treatment with the FGF21 analog(60 ng/mL)restored cell viability and attenuated high glucose-induced ROS accumulation. Mechanistic studies demonstrated that FGFR1 knockdown inhibited the antioxidative stress of FGF21. Further validation of the molecular mechanism revealed that high glucose significantly suppressed the PI3K/Akt pathway activation(the levels of p-Akt and p-PI3K were decreased by 33.9% and 36.6%, respectively), while FGF21 effectively reversed this inhibitory effect and restored the expression of p-Akt and p-PI3K. Treatment with the PI3K inhibitor LY294002 inhibited the cytoprotective effect of FGF21 and significantly increased the ROS-positive cells, these findings confirm that PI3K/Akt signaling is indispensable downstream mechanism for FGF21 to exert its effects.CONCLUSION:FGF21 alleviates high glucose-induced oxidative stress and cellular injury in RPE cells by activating the PI3K/Akt signaling pathway through its receptor FGFR1.
3.Effect of dihydroquercetin on refractive development in mice with form deprivation myopia based on NLRP3 inflammasome pathway
Po ZHAO ; Meng MA ; Tengwen YANG ; Lingfei MENG ; Jing LIU ; Xiaoxiao XING ; Huiying HOU
International Eye Science 2026;26(3):391-397
AIM: To explore the effect of dihydroquercetin on visual function in mice with form deprivation myopia based on the NOD-like receptor thermoprotein domain-related protein 3(NLRP3)inflammasome pathway.METHODS: The C57BL/6 mice were randomly divided into control group and form deprivation myopia model group, and the form deprivation myopia model group was constructed by covering the right eye with a translucent eye patch. After successful modeling, the mice in the model group of form deprivation myopia were randomly divided into model group, low-, medium- and high-dose dihydroquercetin groups, and high-dose dihydroquercetin + NLRP3 agonist group. The diopter and axial length of mice in each group were detected. The kit was used to detect the levels of superoxide dismutase(SOD)and malondialdehyde(MDA)in retinal tissue. RT-qPCR was used to detect the mRNA expressions of NLRP3, apoptosis-associated spot-like protein(ASC), Caspase-1, IL-1β and IL-18 in retinal tissues. Western blot was used to detect the expression of NLRP3, ASC, cleaved Caspase-1, IL-1β and IL-18 proteins in retinal tissues. TUNEL staining was used to detect apoptosis in retinal tissue.RESULTS: Compared with the control group, the diopter of the mice in the model group decreased, and axial length increased, and the SOD decreased whereas MDA, NLRP3, ASC, Caspase-1, IL-1β, IL-18 increased, and the rate of apoptosis in retinal tissue increased(all P<0.05). Compared with the model group, the diopter of mice in the low-, medium- and high-dose dihydroquercetin groups increased, axial length shortened, the SOD increased, whereas MDA, NLRP3, ASC, Caspase-1, IL-1β, IL-18 decreased, and the rate of apoptosis in retinal tissue decreased(all P<0.05). Compared with the high-dose dihydroquercetin group, the high-dose dihydroquercetin+NLRP3 agonist group had reduced diopter, increased axial length, decreased SOD levels, elevated MDA, NLRP3, ASC, Caspase-1, IL-1β, and IL-18 levels, as well as increased apoptosis rate in retinal tissue(all P<0.05).CONCLUSION: Dihydroquercetin can improve visual function in mice with form deprivation myopia by inhibiting pyroptosis and oxidative stress responses, which may be related to the suppression of NLRP3 inflammasome. NLRP3 agonists can partially mitigate the effects of high-dose dihydroquercetin on form deprivation myopia in mice.
4.GEO database-based investigation on the expression and role of mitochondrial metabolism genes AKT1, ATP5F1, and BAG3 in pterygium
Shiyi WANG ; Jing WANG ; Hua WANG ; Yuping CHEN
International Eye Science 2026;26(3):398-404
AIM: To investigate expression differences and mechanism of action of serine/threonine kinase 1(AKT1), ATP synthase F1 subunit(ATP5F1), and Bcl-2-associated anti-apoptotic gene 3(BAG3)in the occurrence and progression of pterygium.METHODS:Pterygium-related gene expression data were retrieved from GEO database to screen differentially expressed genes(DEGs). String and Cytoscape were used to construct protein-protein interaction(PPI)networks and identify core targets. GO/KEGG enrichment analyzed mitochondrial metabolic pathways. The pterygium samples(head/body)were collected; pathological features were evaluated by HE staining, and the expression of AKT1, ATP5F1, and BAG3 was detected via immunohistochemistry(IHC).RESULTS:A total of 1 264 DEGs were identified(585 upregulated, 679 downregulated). GO analysis showed significant enrichment of mitochondrial pathways regarding to biological processes, cell components and molecular functions; KEGG analysis highlighted oxidative phosphorylation and chemical carcinogenesis-reactive oxygen species(ROS)pathways. The head and body pterygium samples were collected from 28 cases(28 eyes)that received pterygium surgery, including 7 males(7 eyes)and 21 females(21 eyes), with a mean age of 69.32±8.98 years. HE staining showed more severe dysplasia, disordered stroma, and inflammation in the pterygium head versus the body. IHC detection confirmed significantly lower AKT1, ATP5F1, and BAG3 expression in the head compared with the body(all P<0.05).CONCLUSION:GEO-based bioinformatics and experiments confirmed that AKT1/ATP5F1/BAG3(mitochondrial genes)had significant differential expression in pterygium, correlating with pathological progression. They may regulate mitochondrial metabolism to mediate pterygium progression, offering new insights for targeted therapy.
5.Research progress on the pathogenesis and risk factors of diabetic macular edema
International Eye Science 2026;26(3):424-428
Diabetic macular edema(DME)may occur at any stage of diabetic retinopathy(DR)and represents a significant cause of visual impairment in patients with DR. The pathogenesis of DME is complex, involving numerous risk factors. Recent studies have increasingly revealed that the occurrence and development of DME represents an intertwined pathophysiological process involving metabolic disorders, disruption of the blood-retinal barrier, amplified inflammatory responses, hemodynamic alterations, and the formation of hypoxic microenvironments. Multiple risk factors, including hyperglycaemia, dyslipidaemia, and genetic factors, synergistically drive this process. Risk factors and pathogenesis are a dynamic, interactive relationship in the progression of disease. Comprehensive management of risk factors such as blood glucose and blood lipids, along with multi-target interventions on core pathogenic mechanisms—such as combined anti-vascular endothelial growth factor(VEGF)and anti-inflammatory treatments, exploration of gene therapy and regulation of metabolic pathways—are expected to become key strategies for delaying the progression of DME.
6.New perspectives of RNA methylation regulatory networks in the pathophysiologic mechanisms of diabetic retinopathy
International Eye Science 2026;26(3):429-434
Diabetic retinopathy(DR)is the most prevalent microvascular complication associated with diabetes mellitus(DM). Its pathological mechanisms encompass various factors, including microvascular lesions, chronic inflammation, oxidative stress, and metabolic memory effects. Nevertheless, current clinical practices in the diagnosis and treatment encounter significant challenges, particularly regarding early detection and the limited efficacy of therapeutic interventions. Recently, RNA methylation modifications, particularly N6-methyladenosine(m6A), have emerged as a central mechanism in the epigenetic regulation of the transcriptome, playing a crucial role in the pathophysiological processes underlying DR. The regulation of m6A modification is a synergistic process involving methyltransferases(such as METTL3), demethylases(such as FTO and ALKBH5), and binding proteins(such as the YTHDF family), which collectively influence RNA metabolism and participate in various pathological processes. Additionally, m6A interacts within a complex cooperative regulatory network alongside non-coding RNAs(including miRNA, lncRNA, and circRNA), significantly contributing to the key pathological mechanisms of DR. This article systematically reviews the existing literature, with the objective of constructing a regulatory network map for DR centered on RNA methylation. This review not only enhances the understanding of the pathogenesis of DR but also provides a theoretical foundation for developing novel diagnostic markers and targeted treatment strategies based on m6A.
7.Advances in the assessment of diabetic retinopathy severity in periarterial capillary-free zone by optical coherence tomography angiography
International Eye Science 2026;26(3):441-446
Diabetic retinopathy(DR), the most common microvascular complication of diabetes, has become a leading cause of visual impairment and blindness across all age groups. The early diagnosis and severity assessment of DR rely on the precise evaluation of retinal microvascular alterations. The periarterial capillary-free zone(paCFZ), a physiological avascular region surrounding retinal arteries, has recently been recognized as an important biomarker reflecting the status of retinal microcirculation. Advances in optical coherence tomography angiography(OCTA)have enabled noninvasive, high-resolution quantification of the paCFZ, offering a novel approach for the early detection and stratification of DR. This review systematically summarizes the definition and developmental mechanism of the paCFZ, as well as its morphological characteristics across different stages of DR, with a particular focus on the advantages of OCTA in visualizing and quantifying the paCFZ. We further discuss the differential manifestations of the paCFZ in nonproliferative DR and proliferative DR, and its associations with retinal ischemia and oxygenation status. In addition, the potential clinical value of paCFZ in evaluating responses to anti-vascular endothelial growth factor(VEGF)therapy and predicting disease progression is summarized. Finally, the challenges in clinical translation and future research directions are addressed, aiming to provide theoretical support and new perspectives for early screening, risk stratification, and personalized management of DR.
8.Current applications and research progression of central nervous system adaptation in rehabilitation of ophthalmic diseases
International Eye Science 2026;26(3):447-451
Central nervous system adaptation represents a core compensatory mechanism whereby the nervous system dynamically adjusts structure and function to counteract pathological damages, relying on the synergistic effects of multi-level neural plasticity. Amblyopia training may enhance cortical function through dichoptic augmented reality and visual attention exercises, cognitive training and neuroimmunomodulation may facilitate multifocal intraocular lens adaptation after cataract surgery, transcranial alternating current stimulation may improve visual fields in glaucoma, and perceptual learning may optimize eccentric fixation in age-related macular degeneration rehabilitation. These therapeutic approaches may shift the focus of managements from traditional structural repair to neural functional remodeling in ophthalmic diseases, which will open a new way for enhancing patients' visual function and quality of vision. This review aims to systematically review the mechanisms underlying central nervous system adaptability, its current applications in ocular disease rehabilitation and future prospects.
9.Association between photoreceptor gene mutation-caused diseases and myopia
Yunqing LIANG ; Jiali LI ; Shanshan LIU ; Xiaohe LU
International Eye Science 2026;26(3):452-457
Myopia has become a significant eye health problem, which is thought to result from the complex interactions of genetic and environmental factors. This review focuses on two types of hereditary retinal diseases caused by mutations in photoreceptor genes, including rod-cone cell dystrophy(retinitis pigmentosa)and cone dysfunction syndromes(achromatopsia, blue cone monochromatism and Bornholm eye disease). It systematically explores the intrinsic connection between these diseases and the myopia phenotype, and elaborates on the core mechanisms by which pathogenic genes such as RPGR and OPN1LW/OPN1MW, which cause defects in ciliary structure and protein transport and interfere with the visual signal pathway, jointly induce choroidal thinning and scleral remodeling, ultimately driving the elongation of axial length and the occurrence of myopia. By tracing the association of photoreceptor gene mutations with myopia, this article provides a new perspective for in-depth understanding of the genetic mechanism of myopia and is of great significance for the development of early risk warning and targeted intervention strategies.
10.Multimodal imaging combined with artificial intelligence in the study of ocular biometric parameters in high myopia
Minghui LIU ; Chusheng CAI ; Shaolin DU
International Eye Science 2026;26(3):477-482
High myopia(HM)is one of the leading causes of irreversible visual impairment, characterized by pathological changes such as axial elongation and multidimensional abnormalities in fundus biometric parameters. This review systematically summarizes the dynamic characteristics of fundus biometric parameters(including those of the retina, optic disc, macula, and choroid)in HM patients, as visualized via multimodal imaging techniques [e.g., optical coherence tomography(OCT)and optical coherence tomography angiography(OCTA)], and their association with HM progression and related complications. The article further highlights the strategies and advantages of multimodal imaging integration and discusses recent advances and challenges in combining artificial intelligence(AI)with these imaging modalities to automate fundus parameter analysis, lesion detection, risk stratification, and clinical decision-making for HM. This review aims to provide an evidence-based foundation for the early warning, precise intervention, and personalized management of HM, thereby facilitating a clinical paradigm shift from “reactive treatment” to “active health management”.

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