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Pathogenic mechanisms contributing to the vulnerability of aging human photoreceptor cells
1Department of Anatomy, All India Institute of Medical Sciences, New Delhi, India. tapas_nag@aiims.edu.
Abstract:
In human retina, photoreceptor cell death (PCD) is a slow but conspicuous event, which continues with aging. Rods die earlier than cones, the latter continue to alter in a subtle manner until advanced aging. This review summarizes the existing information on age-related changes in photoreceptor cells, especially cones and analyses the possible associated factors. Oxidative and nitrosative stress are involved in photoreceptor alterations, which may stem from light and iron toxicity and other sources. Lipid peroxidation in macular photoreceptor outer segments and mitochondrial aberrations are prominent in aging. It is important to understand how those changes ultimately trigger PCD. The redistribution of calbindin D-28K and long/middle-wavelength-sensitive opsin in the parafoveal and perifoveal cones, anomalies in their somata and axons are strong predictors of their increasing vulnerability with aging. Signs of reduced autophagy, with autophagosomes containing organelle remnants are seen in aging photoreceptor cells. Currently, mechanisms that lead to human PCD are unknown; some observations favour apoptosis as a pathway. Since cones appear to change slowly, there is an opportunity to reverse those changes before they die. Therefore, a full understanding of how cones alter and the molecular pathways they utilize for survival must be the future research goal. Recent approaches to prevent PCD in aging and diseases are highlighted.
Insights
Photoreceptor cell death (PCD) accelerates with aging, particularly in cones. Understanding cone alteration mechanisms is crucial for developing interventions to prevent age-related vision loss.
Area of Science:
- Ophthalmology
- Cell Biology
- Gerontology
Background:
- Photoreceptor cell death (PCD) is a significant factor in age-related vision decline.
- Cones, crucial for detailed and color vision, undergo subtle but progressive alterations with aging.
Purpose of the Study:
- To review age-related changes in human retinal photoreceptor cells, focusing on cones.
- To analyze factors contributing to photoreceptor vulnerability and cell death.
- To highlight potential therapeutic strategies for age-related PCD.
Main Methods:
- Literature review of existing research on aging photoreceptor cells.
- Analysis of molecular and cellular changes associated with age-related PCD.
- Examination of factors like oxidative stress, lipid peroxidation, and autophagy.
Main Results:
- Aging involves oxidative and nitrosative stress, lipid peroxidation, and mitochondrial dysfunction in photoreceptors.
- Alterations in calbindin D-28K and opsin distribution, along with axonal and somatic anomalies, predict cone vulnerability.
- Reduced autophagy and potential apoptosis pathways are observed in aging photoreceptor cells.
Conclusions:
- Age-related photoreceptor changes, especially in cones, are complex and multifactorial.
- Understanding the molecular pathways of cone alteration offers opportunities for therapeutic intervention.
- Further research into cone survival mechanisms is essential to combat age-related vision impairment.
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