Alzheimer's disease pathophysiology in the Retina

神经退行性变 视网膜 神经科学 疾病 痴呆 医学 生物标志物 视网膜 眼科 病理 生物 生物化学
作者
Bhakta Prasad Gaire,Yosef Koronyo,Dieu‐Trang Fuchs,Haoshen Shi,Altan Rentsendorj,Ron Danziger,Jean‐Philippe Vit,Nazanin Mirzaei,Jonah Doustar,Julia Sheyn,Harald Hampel,Andrea Vergallo,Miyah R. Davis,Ousman Jallow,Filippo Baldacci,Steven Verdooner,Ernesto Barrón,Mehdi Mirzaei,Vivek Gupta,Stuart L. Graham
出处
期刊:Progress in Retinal and Eye Research [Elsevier BV]
卷期号:101: 101273-101273 被引量:25
标识
DOI:10.1016/j.preteyeres.2024.101273
摘要

The retina is an emerging CNS target for potential noninvasive diagnosis and tracking of Alzheimer's disease (AD). Studies have identified the pathological hallmarks of AD, including amyloid β-protein (Aβ) deposits and abnormal tau protein isoforms, in the retinas of AD patients and animal models. Moreover, structural and functional vascular abnormalities such as reduced blood flow, vascular Aβ deposition, and blood-retinal barrier damage, along with inflammation and neurodegeneration, have been described in retinas of patients with mild cognitive impairment and AD dementia. Histological, biochemical, and clinical studies have demonstrated that the nature and severity of AD pathologies in the retina and brain correspond. Proteomics analysis revealed a similar pattern of dysregulated proteins and biological pathways in the retina and brain of AD patients, with enhanced inflammatory and neurodegenerative processes, impaired oxidative-phosphorylation, and mitochondrial dysfunction. Notably, investigational imaging technologies can now detect AD-specific amyloid deposits, as well as vasculopathy and neurodegeneration in the retina of living AD patients, suggesting alterations at different disease stages and links to brain pathology. Current and exploratory ophthalmic imaging modalities, such as optical coherence tomography (OCT), OCT-angiography, confocal scanning laser ophthalmoscopy, and hyperspectral imaging, may offer promise in the clinical assessment of AD. However, further research is needed to deepen our understanding of AD's impact on the retina and its progression. To advance this field, future studies require replication in larger and diverse cohorts with confirmed AD biomarkers and standardized retinal imaging techniques. This will validate potential retinal biomarkers for AD, aiding in early screening and monitoring.
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