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April 26, 2026Journal of Clinical Medicine3 citationsOpen Access

Targeting Neuroinflammation and Oxidative Stress to Slow Neurodegeneration in the Visual System

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NSNara ShakakiMYMinzhong Yu

Key Points

  • This review examines the role of neuroinflammation and oxidative stress in neurodegeneration of the visual system.
  • Narrative review of peer-reviewed literature using PubMed from 2000 to 2025
  • Focus on original research, systematic reviews, and high-impact publications
  • Selected studies based on relevance to glial activation and oxidative stress mechanisms.
  • Persistent microglial and Müller glial activation drives neuronal injury in glaucoma, AMD, DR, and AD.
  • Mitochondrial dysfunction and excess production of reactive oxygen/nitrogen species form a self-amplifying cycle.
  • Retinal findings may serve as noninvasive biomarkers for Alzheimer's disease pathology.

Abstract

Purpose: Neuroinflammation and oxidative stress are increasingly recognized as central, interconnected drivers of neurodegeneration in the visual system. This review examines the pathogenic mechanisms shared across glaucoma, age-related macular degeneration (AMD), diabetic retinopathy (DR), and Alzheimer’s disease (AD), and evaluates the therapeutic rationale for targeting both pathways simultaneously. Methods: A narrative review of peer-reviewed literature was conducted using PubMed. Searches included the following MeSH terms: neuroinflammation, oxidative stress, retinal neurodegeneration, microglia, Müller glia, mitochondrial dysfunction, glaucoma, age-related macular degeneration, diabetic retinopathy, and Alzheimer’s disease. Priority was given to original research, systematic reviews, and high-impact publications from 2000 through 2025. However, seminal foundational works were included regardless of publication date. Studies were selected based on relevance to glial activation, mitochondrial dysfunction, reactive oxygen and nitrogen species, and disease-specific neuronal outcomes. Results: Across all four diseases, persistent microglial and Müller glial activation, mitochondrial electron transport chain dysfunction, and excess reactive oxygen species (ROS) and reactive nitrogen species (RNS) production form a self-amplifying feed-forward loop that accelerates neuronal injury. In glaucoma, these mechanisms drive intraocular pressure-independent retinal ganglion cell loss. In AMD and DR, lipid dysregulation, complement activation, and chronic hyperglycemia sustain oxidative-inflammatory injury to the retinal pigment epithelium, photoreceptors, and neurovasculature. In AD, retinal amyloid deposition and oxidative burden mirror cortical pathology, positioning the retina as a noninvasive biomarker site. Conclusions: Neuroinflammation and oxidative stress constitute unifying upstream mechanisms across major vision-threatening neurodegenerative diseases. Combination therapeutic strategies that simultaneously modulate glial activation and restore redox homeostasis may offer superior neuroprotective efficacy compared to approaches targeting isolated downstream mediators.

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Cite This Study

Shakaki et al. (2026) studied this question.

synapsesocial.com/papers/69edac2e4a46254e215b3f80https://doi.org/10.3390/jcm15093254
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1The Eye as a Window to Neurodegeneration: Oxidative Stress, Optic Nerve Vulnerability, and Retinal Biomarkers—A Scoping Review2026
  2. 2Oxidative Stress in Glaucoma: From Pathogenic Mechanisms to Emerging Antioxidant Therapies2026 · 3 citations
  3. 3Linking Neurodegeneration and Age-related Macular Degeneration:Unified Pathways and Intervention Strategies2026
  4. 4Reactive oxygen species and oxidative stress in ocular disease: from molecular mechanisms to targeted therapies2025 · 7 citations
  5. 5Environmental Exposures and Oxidative Stress in Retinal and Optic Nerve Diseases: Mechanisms, Consequences, and Therapeutic Opportunities2026 · 5 citations