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Müller cell vulnerability in aging human retina: Implications on photoreceptor cell survival
1Department of Anatomy, All India Institute of Medical Sciences, New Delhi, India.
Abstract:
Müller glial cells (MC) support various metabolic functions of the retinal neurons, and maintain the homeostasis. Oxidative stress is intensified with aging, and in human retina, MC and photoreceptors undergo lipid peroxidation and protein nitration. Information on how MC respond to oxidative stress is vital to understand the fate of aging retinal neurons. This study examined age-related changes in MC of donor human retina (age: 35-98 years; N = 18 donors). Ultrastructural and immunohistochemical observations indicate that MC undergo gliosis and increased lipid peroxidation, and show osmotic changes with advanced aging (>80 years). Photoreceptor cells also undergo oxidative-nitrosative stress with aging, and their synapses also show clear osmotic swelling. MC respond to oxidative stress via proliferation of smooth endoplasmic reticulum in their processes, and increased expression of aquaporin-4 in endfeet and outer retina. In advanced aged retinas (81-98 years), they showed mitochondrial disorganisation, accumulation of lipids and autophagosomes, lipofuscin granules and axonal remnants in phagolysosomes in their inner processes, suggesting a reduced phagocytotic potential in them with aging. Glutamine synthetase expression does not alter until advanced aging, when the retinas show its increased expression in endfeet and Henle fiber layer. It is evident that MC are vulnerable with normal aging and this could be a reason for photoreceptor cell abnormalities reported with aging of the human retina.
Insights
Aging human retinas show Müller glial cells (MC) vulnerability, with oxidative stress leading to cellular changes and reduced function. This impacts retinal neuron health and contributes to age-related vision decline.
Area of Science:
- Ophthalmology
- Neuroscience
- Cell Biology
Background:
- Müller glial cells (MC) are crucial for retinal neuron support and homeostasis.
- Aging intensifies oxidative stress in the human retina, affecting MC and photoreceptors.
- Understanding MC responses to oxidative stress is key to comprehending aging retinal neuron fate.
Purpose of the Study:
- To investigate age-related structural and functional changes in human Müller glial cells.
- To correlate MC alterations with oxidative stress markers in aging retinas.
Main Methods:
- Ultrastructural analysis of donor human retinas (ages 35-98).
- Immunohistochemical examination for oxidative stress markers and cellular components.
- Assessment of glial changes, lipid peroxidation, and aquaporin-4 expression.
Main Results:
- Aging MC exhibit gliosis, increased lipid peroxidation, and osmotic changes, especially after 80 years.
- MC respond to oxidative stress by proliferating smooth endoplasmic reticulum and upregulating aquaporin-4.
- Advanced aging shows MC mitochondrial disorganization, lipid accumulation, and reduced phagocytic capacity.
Conclusions:
- Müller glial cells are vulnerable to normal aging processes.
- Age-related MC dysfunction, including reduced phagocytosis, may contribute to photoreceptor abnormalities.
- These findings highlight the critical role of MC in maintaining retinal health during aging.

