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Updated: May 30, 2026

Techniques to Induce and Quantify Cellular Senescence
Published on: May 1, 2017
Stem cell microRNAs in senescence and immortalization: novel players in cancer therapy
Jose A Leal1, Andrea Feliciano, Matilde E Lleonart
1Pathology Department, Oncology and Pathology Group, Institut de Recerca Hospital Vall d'Hebron, Passeig Vall d'Hebron, 119-129, 08035, Barcelona, Spain.
Abstract:
The molecular etiology of malignancy remains one of the most challenging disease processes under scientific investigation; therefore, improved approaches for their treatment are urgently needed. MicroRNAs are highly conserved nonprotein-coding RNAs that regulate gene expression. They are involved in important homeostatic processes, such as cellular proliferation, cell death and development, and affect many diseases, including cancer. High-throughput screenings based on microRNAs related to senescence/immortalization are potential tools for identifying novel proliferative microRNAs that might be involved in carcinogenesis. Recently, a subgroup of highly proliferative microRNAs, which belong to a cluster expressed exclusively in embryonic stem cells and their malignant derivatives (embryonic carcinoma cells), was revealed to play a role in senescence bypass, thereby providing immortalization to human cells. This finding supports the cancer stem cell theory and the relevance of microRNAs in human tumors. This article recapitulates the role of microRNAs that are associated with stem cell properties and their possible link in common pathways related to immortalization and cancer. Ultimately, cancer therapy that is based on the induction of a senescence response is proposed to be highly associated with the loss of stemness properties. Thus, it would be possible to "kill two birds with one stone": along with the inhibition of stemness properties in cancer stem cells, the senescence response could be induced to destroy the cancer stem cell population within a tumor.
Insights
MicroRNAs regulate gene expression and are implicated in cancer. A specific group of microRNAs promotes cell proliferation and immortalization, supporting cancer stem cell theory and offering new therapeutic targets.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Malignancy's molecular basis is complex, necessitating novel therapeutic strategies.
- MicroRNAs (miRNAs) are noncoding RNAs crucial for gene regulation, cellular processes, and disease, including cancer.
Purpose of the Study:
- To review the role of miRNAs in stem cell properties and their connection to immortalization and cancer pathways.
- To explore miRNA-targeted cancer therapies focusing on senescence induction and stemness inhibition.
Main Methods:
- Analysis of high-throughput screening data for miRNAs involved in senescence and proliferation.
- Literature review on the function of specific miRNA clusters in embryonic stem cells and cancer cells.
Main Results:
- A subset of highly proliferative miRNAs, exclusive to embryonic stem cells and their malignant counterparts, facilitates senescence bypass and cell immortalization.
- These findings align with cancer stem cell theory, highlighting miRNAs' significance in tumorigenesis.
Conclusions:
- MicroRNAs associated with stemness properties may share pathways with immortalization and cancer.
- Inducing senescence in cancer therapy could simultaneously inhibit stemness and eliminate cancer stem cells, offering a dual therapeutic benefit.
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