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Simultaneous Imaging and Flow-Cytometry-based Detection of Multiple Fluorescent Senescence Markers in Therapy-Induced Senescent Cancer Cells
Published on: July 12, 2022
Comprehensive Cellular Senescence Evaluation to Aid Targeted Therapies
Xiaolan Zhou1, Xiaofeng Zhu1, Weixu Wang1,2
1State Key Laboratory of Genetic Engineering, National Clinical Research Center for Aging and Medicine, Huashan Hospital, Collaborative Innovation Center of Genetics and Development, Human Phenome Institute, Center for Evolutionary Biology, Shanghai Engineering Research Center of Industrial Microorganisms, School of Life Sciences, Fudan University, Shanghai 200438, China.
Abstract:
Drug resistance to a single agent is common in cancer-targeted therapies, and rational drug combinations are a promising approach to overcome this challenge. Many Food and Drug Administration-approved drugs can induce cellular senescence, which possesses unique vulnerabilities and molecular signatures. However, there is limited analysis on the effect of the combination of cellular-senescence-inducing drugs and targeted therapy drugs. Here, we conducted a comprehensive evaluation of cellular senescence using 7 senescence-associated gene sets. We quantified the cellular senescence states of ~10,000 tumor samples from The Cancer Genome Atlas and examined their associations with targeted drug responses. Our analysis revealed that tumors with higher cellular senescence scores exhibited increased sensitivity to targeted drugs. As a proof of concept, we experimentally confirmed that etoposide-induced senescence sensitized lung cancer cells to 2 widely used targeted drugs, erlotinib and dasatinib. Furthermore, we identified multiple genes whose dependencies were associated with senescence status across ~1,000 cancer cell lines, suggesting that cellular senescence generates unique vulnerabilities for therapeutic exploitation. Our study provides a comprehensive overview of drug response related to cellular senescence and highlights the potential of combining senescence-inducing agents with targeted therapies to improve treatment outcomes in lung cancer, revealing novel applications of cellular senescence in targeted cancer therapies.
Insights
Cellular senescence, a state induced by certain drugs, can increase cancer cells
Area of Science:
- Oncology
- Cancer Biology
- Drug Discovery
Background:
- Drug resistance to single-agent targeted therapies is a significant challenge in cancer treatment.
- Cellular senescence, inducible by FDA-approved drugs, presents unique vulnerabilities and molecular signatures.
- Limited research exists on combining senescence-inducing agents with targeted therapies.
Purpose of the Study:
- To comprehensively evaluate cellular senescence states in tumors and their association with targeted drug responses.
- To investigate the therapeutic potential of combining senescence-inducing agents with targeted therapies.
- To identify novel vulnerabilities associated with cellular senescence for targeted cancer therapy.
Main Methods:
- Analysis of ~10,000 tumor samples from The Cancer Genome Atlas (TCGA) using 7 senescence-associated gene sets.
- Quantification of cellular senescence scores and examination of their correlation with targeted drug responses.
- Experimental validation using lung cancer cells treated with etoposide to induce senescence, followed by exposure to erlotinib and dasatinib.
Main Results:
- Higher cellular senescence scores in tumors correlated with increased sensitivity to targeted drugs.
- Etoposide-induced senescence sensitized lung cancer cells to targeted drugs erlotinib and dasatinib.
- Identification of genes whose dependencies are linked to senescence status across ~1,000 cancer cell lines.
Conclusions:
- Cellular senescence can enhance sensitivity to targeted cancer therapies.
- Combining senescence-inducing agents with targeted therapies holds promise for improving treatment outcomes, particularly in lung cancer.
- Cellular senescence creates exploitable vulnerabilities in cancer cells, opening new avenues for targeted therapeutic strategies.
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