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Updated: Oct 19, 2025

SA-β-Galactosidase-Based Screening Assay for the Identification of Senotherapeutic Drugs
Published on: June 28, 2019
Potential Use of Senolytics for Pharmacological Targeting of Precancerous Lesions
Tareq Saleh1, Valerie J Carpenter2
1Department of Basic Medical Sciences, Faculty of Medicine, Hashemite University, Zarqa, Jordan (T.S.); Department of Pharmacology and Toxicology, School of Medicine, Virginia Commonwealth University, Richmond, Virginia (V.J.C.) tareq@hu.edu.jo.
Abstract:
Senescence is a cell state that contributes to several homeostatic and pathologic processes. In addition to being induced in somatic cells in response to replicative exhaustion (replicative senescence) as part of organismal aging, senescence can also be triggered prematurely by oncogene hyperactivation or tumor suppressor dysfunction [oncogene-induced senescence (OIS)]. Consequently, senescent cells comprise a major component of precancerous lesions of skin, oral mucosa, nasopharynx, prostate, gut, and lung. Unfortunately, invasive (or minimally invasive) interventions are currently the only available approach employed to eradicate premalignant lesions that carry the potential for cancer progression. Senolytics are a newly emerging drug class capable of selectively eliminating senescent cells. Although senolytics have been successfully demonstrated to mitigate a myriad of aging-related pathologies and to cull senescent cancer cells, there is a paucity of evidence for the potential use of senolytics as a novel approach to eliminate oncogene-induced senescent cells. This Emerging Concepts commentary will 1) summarize evidence in established models of OIS including B-Raf-induced nevi, transgenic lung cancer, and pancreatic adenocarcinoma models, as well as evidence from clinical precancerous lesions; 2) suggest that OIS is targetable; and 3) propose the utilization of senolytic agents as a revolutionary means to interfere with the ability of senescent premalignant cells to progress to cancer in vitro and in vivo If proven to be effective, senolytics will represent an emerging tool to pharmacologically treat precancerous lesions. SIGNIFICANCE STATEMENT: The treatment of premalignant lesions is largely based on the utilization of invasive (or minimally invasive) measures. Oncogene-induced senescence (OIS) is one form of senescence that occurs in response to oncogene overexpression in somatic cells and is present in precancerous lesions. Although the contribution of OIS to disease progression is undetermined, recent evidence suggests that senescent cells are permissive for malignant transformation. Accordingly, the pharmacological targeting of oncogene-induced senescent cells could potentially provide a novel, less invasive, means for the treatment of premalignant disease.
Insights
Senolytics, drugs that eliminate senescent cells, show promise for treating precancerous lesions. Targeting oncogene-induced senescence (OIS) could offer a novel, less invasive approach to prevent cancer progression.
Area of Science:
- Cellular senescence
- Oncogenesis
- Cancer prevention
Background:
- Senescence is a cellular state involved in aging and cancer development.
- Oncogene-induced senescence (OIS) occurs in precancerous lesions.
- Current treatments for premalignant lesions are often invasive.
Purpose of the Study:
- To summarize evidence for targeting OIS.
- To propose senolytics as a novel treatment for OIS.
- To explore senolytics for preventing cancer progression from premalignant lesions.
Main Methods:
- Review of evidence in OIS models (B-Raf nevi, lung, pancreatic cancer).
- Analysis of OIS in clinical precancerous lesions.
- Discussion of senolytic agents' potential to eliminate senescent premalignant cells.
Main Results:
- Senescent cells are present in various precancerous lesions.
- OIS models demonstrate the presence of senescent cells.
- Senolytics have shown efficacy in aging pathologies and cancer, but OIS-specific data is emerging.
Conclusions:
- OIS is a targetable state in premalignant lesions.
- Senolytic agents offer a potential novel, less invasive therapeutic strategy.
- Pharmacological targeting of OIS could prevent cancer development.

