Lipofuscin

Lipofuscin is a yellow-brown, autofluorescent cellular pigment that accumulates as cells retain undegradable material, making it an important indicator of cellular aging and lysosomal activity. It forms when lysosomes incompletely digest oxidized lipids, proteins, and other cellular components, producing residual bodies that persist within long-lived or postmitotic cells. In biology, lipofuscin is studied in neurons, cardiac muscle, and retinal pigment epithelial cells to assess aging, oxidative stress, and tissue damage. Its natural fluorescence supports microscopy-based detection, while altered accumulation can provide clues about neurodegeneration, retinal disease, and other age-associated processes.

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Research

JoVE EoE - Neuropathology

Transmission Electron Microscopy of Lipofuscin Granules in Neurons

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2025

Treat the tissue with osmium tetroxide to stabilize the cell structures, including lipofuscin.

Improved Lipofuscin Models and Quantification of Outer Segment Phagocytosis Capacity in Highly Polarized Human Retinal Pigment Epithelial Cultures

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Cited by 1 •

2023

This protocol describes a lipofuscin accumulation model in highly differentiated and polarized human retinal pigment epithelial (RPE) cultures and an improved outer segment (OS) phagocytosis assay to detect the total OS consumption/degradation capacity of the RPE. These methods overcome the limitations of previous lipofuscin models and classical pulse-chase outer segment phagocytosis assays.

Flow Cytometry-Based Quantification of Therapy-Induced Senescent Cancer Cells

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2025

This video illustrates a flow cytometry-based assay for quantifying therapy-induced senescent cancer cells with dual senescence markers. The detection and quantification of senescent cells involve using a β-galactosidase substrate. The substrate is cleaved by active lysosomal β-galactosidase within the senescent cells, producing a fluorescent product that, in conjunction with autofluorescent lipofuscin granules, marks the senescent cancer cells.

Obtaining Specimens with Slowed, Accelerated and Reversed Aging in the Honey Bee Model

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Cited by 19 •

2013

In honey bee workers, aging depends on social behaviors rather than on chronological age. Here we show how worker-types with very different aging patterns can be obtained and analyzed for cellular senescence.

Visualizing Pathogen-Induced Oxidative Stress in C. elegans Using GFP-Tagged SKN-1

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2026

Source: Naji, A., et al. Studying Oxidative Stress Caused by the Mitis Group Streptococci in Caenorhabditis elegans. J. Vis. Exp. (2019)This video demonstrates the use of green fluorescent protein-tagged SKN-1 in C. elegans to monitor oxidative stress by tracking green fluorescence. Worms exposed to S. gordonii show strong nuclear fluorescence, confirming pathogen-induced stress, while those fed E. coli display diffuse green fluorescence in the cytoplasm, indicating minimal SKN-1 activation.

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