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Updated: Jun 19, 2025

SA-β-Galactosidase-Based Screening Assay for the Identification of Senotherapeutic Drugs
Published on: June 28, 2019
Senolytic Prodrugs: A Promising Approach to Enhancing Senescence-Targeting Intervention
Mengyang Chang1, Yue Dong2, Alexis B Cruickshank-Taylor2
1Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona, 85721, USA.
Abstract:
Cellular senescence has emerged as a potential therapeutic target for aging and a wide range of age-related disorders. Despite the encouraging therapeutic impact of senolytic agents on improving lifespan and the outcomes of pharmacological intervention, the senolytic induced side effects pose barriers to clinical application. There is a pressing need for selective ablation of senescent cells (SnCs). The design of senolytic prodrugs has been demonstrated as a promising approach to addressing these issues. These prodrugs are generally designed via modification of senolytics with a cleavable galactose moiety to respond to the senescent biomarker - senescence-associated β-galactosidase (SA-β-gal) to restore their therapeutic effects. In this Concept, we summarize the developments by categorizing these prodrugs into two classes: 1) galactose-modified senolytic prodrugs, in which sensing unit galactose is either directly conjugated to the drug or via a self-immolative linker and 2) bioorthogonal activation of senolytic prodrugs. In the bioorthogonal prodrug design, galactose is incorporated into dihydrotetrazine to sense SA-β-gal for click activation. Notably, in addition to repurposed chemotherapeutics and small molecule inhibitors, PROTACs and photodynamic therapy have been introduced as new senolytics in the prodrug design. It is expected that the senolytic prodrugs would facilitate translating small-molecule senolytics into clinical use.
Insights
Senolytic prodrugs selectively eliminate senescent cells by utilizing galactose to activate drugs in response to senescence-associated β-galactosidase (SA-β-gal). This approach aims to minimize side effects and advance aging therapies.
Area of Science:
- Biomedical Sciences
- Gerontology
- Drug Development
Background:
- Cellular senescence is a therapeutic target for aging and age-related diseases.
- Senolytic agents show promise but have side effects limiting clinical use.
- Selective ablation of senescent cells (SnCs) is needed.
Purpose of the Study:
- To review senolytic prodrug designs for selective SnC ablation.
- To categorize prodrugs based on activation mechanisms.
- To highlight advancements in senolytic prodrug development.
Main Methods:
- Categorization of prodrugs into galactose-modified and bioorthogonal activation classes.
- Description of galactose moiety conjugation and self-immolative linkers.
- Explanation of bioorthogonal prodrugs using dihydrotetrazine for SA-β-gal sensing.
Main Results:
- Senolytic prodrugs are designed to be activated by senescence-associated β-galactosidase (SA-β-gal).
- Two main classes of prodrugs are identified: galactose-modified and bioorthogonal.
- New senolytics like PROTACs and photodynamic therapy are incorporated into prodrug designs.
Conclusions:
- Senolytic prodrugs offer a promising strategy to overcome side effects of current senolytics.
- Prodrug design enables targeted delivery and activation, enhancing therapeutic potential.
- These advancements are expected to facilitate the clinical translation of senolytic therapies.
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