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Updated: May 29, 2026

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
Analysis of the senescence-associated cell surfaceome reveals potential senotherapeutic targets
Yushuang Deng1, Ting Liu1, Enzo Scifo1
1Translational Biogerontology Lab, German Center for Neurodegenerative Diseases (DZNE), Bonn, Germany.
Abstract:
The accumulation of senescent cells is thought to play a crucial role in aging-associated physiological decline and the pathogenesis of various age-related pathologies. Targeting senescence-associated cell surface molecules through immunotherapy emerges as a promising avenue for the selective removal of these cells. Despite its potential, a thorough characterization of senescence-specific surface proteins remains to be achieved. Our study addresses this gap by conducting an extensive analysis of the cell surface proteome, or "surfaceome", in senescent cells, spanning various senescence induction regimes and encompassing both murine and human cell types. Utilizing quantitative mass spectrometry, we investigated enriched cell surface proteins across eight distinct models of senescence. Our results uncover significant changes in surfaceome expression profiles during senescence, highlighting extensive modifications in cell mechanics and extracellular matrix remodeling. Our research also reveals substantive heterogeneity of senescence, predominantly influenced by cell type and senescence inducer. A key discovery of our study is the identification of four unique cell surface proteins with extracellular epitopes. These proteins are expressed in senescent cells, absent or present at low levels in their proliferating counterparts, and notably upregulated in tissues from aged mice and an Alzheimer's disease mouse model. These proteins stand out as promising candidates for senotherapeutic targeting, offering potential pathways for the detection and strategic targeting of senescent cell populations in aging and age-related diseases.
Insights
Cellular senescence drives aging and disease. This study identifies novel surface proteins on senescent cells, offering new targets for senotherapeutics to combat age-related decline and diseases like Alzheimer's.
Area of Science:
- Gerontology and Cellular Biology
- Immunology and Therapeutics
Background:
- Cellular senescence contributes to aging and age-related diseases.
- Targeting senescent cells via surface molecules is a promising therapeutic strategy.
- A comprehensive understanding of senescence-specific surface proteins is lacking.
Purpose of the Study:
- To characterize the cell surface proteome (surfaceome) of senescent cells.
- To identify novel cell surface targets for senotherapeutic intervention.
- To investigate senescence heterogeneity across different models.
Main Methods:
- Quantitative mass spectrometry was employed to analyze the surfaceome of senescent cells.
- Eight distinct senescence models (murine and human) were utilized.
- Cellular mechanics and extracellular matrix remodeling were assessed.
Main Results:
- Significant alterations in surfaceome expression profiles were observed during senescence.
- Senescence exhibits substantial heterogeneity, influenced by cell type and inducer.
- Four unique cell surface proteins with extracellular epitopes were identified on senescent cells.
- These proteins were upregulated in aged and Alzheimer's disease mouse tissues.
Conclusions:
- The identified surface proteins are promising candidates for senotherapeutic targeting.
- These targets offer potential for detecting and treating senescent cell populations in aging and disease.
- This work advances the understanding of senescence and its therapeutic implications.
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