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Updated: May 6, 2026

Intracellular Refolding Assay
Published on: January 24, 2012
A Xanthine Derivative With Novel Heat Shock Protein 90-Alpha Inhibitory and Senolytic Properties
Sandra Atlante1,2, Luca Cis3, Davide Pirolli4
1Laboratory of Epigenetics, Istituti Clinici Scientifici Maugeri IRCCS, Pavia, Italy.
Abstract:
The accumulation of senescent cells contributes to aging and related diseases; therefore, discovering safe senolytic agents-compounds that selectively eliminate senescent cells-is a critical priority. Heat shock protein 90 (HSP90) inhibitors (HSP90i), traditionally investigated for cancer treatment, have shown potential as senolytic agents. However, inhibitors face formulation, toxicity, and cost challenges. To overcome these limitations, we employed a virtual screening approach combining structure-based prefiltering with a ligand-based pharmacophore model to identify novel, potentially safe HSP90 alpha isoform inhibitors exhibiting senolytic properties. This strategy identified 14 candidate molecules evaluated for senolytic activity in primary human fetal pulmonary fibroblasts. Four compounds exhibited significant HSP90i and senolytic activity, including two novel compounds, namely K4 and K5. The latter, 1-benzyl-3-(2-methylphenyl)-3,7-dihydro-1H-purine-2,6-dione, structurally related to the xanthinic family, emerged as a promising, well-tolerated senolytic agent. K5 demonstrated senolytic activity across various cellular senescence models, including human fibroblasts, mesenchymal stem cells, and breast cancer cells. It was also effective in vivo, extending lifespan in Drosophila and reducing senescence markers in geriatric mice. Additionally, the xanthinic nature of K5 implicates a multimodal action, now including the inhibition of HSP90α, that might enhance its efficacy and selectivity towards senescent cells, Senolytic index SI > 1320 for IMR90 cells, and SI > 770 for WI38 cells, underscoring its therapeutic potential. These findings advance senolytic therapy research, opening new avenues for safer interventions to combat age-related inflammaging and diseases, including cancer, and possibly extend a healthy lifespan.
Insights
Researchers identified novel senolytic compounds targeting Heat Shock Protein 90 alpha (HSP90α). One compound, K5, effectively eliminated senescent cells in vitro and in vivo, showing therapeutic potential for aging and related diseases.
Area of Science:
- Gerontology
- Molecular Biology
- Pharmacology
Background:
- Cellular senescence drives aging and age-related diseases.
- Heat Shock Protein 90 (HSP90) inhibitors show senolytic potential but face challenges.
- Novel, safe senolytic agents are critical for therapeutic interventions.
Purpose of the Study:
- To identify novel, safe Heat Shock Protein 90 alpha (HSP90α) inhibitors with senolytic properties.
- To overcome limitations of existing HSP90 inhibitors through virtual screening.
- To evaluate the senolytic efficacy and safety of identified compounds.
Main Methods:
- Employed virtual screening combining structure-based and ligand-based pharmacophore modeling.
- Identified 14 candidate HSP90α inhibitors.
- Evaluated senolytic activity in primary human fetal pulmonary fibroblasts, various cell models, and in vivo studies.
Main Results:
- Four compounds exhibited significant HSP90 inhibition and senolytic activity.
- Novel compounds K4 and K5 were identified, with K5 showing particular promise.
- K5 demonstrated broad senolytic activity in vitro, extended lifespan in Drosophila, and reduced senescence markers in mice.
Conclusions:
- K5, a xanthinic compound, is a potent, well-tolerated senolytic agent targeting HSP90α.
- K5 exhibits multimodal action, enhancing selectivity and efficacy against senescent cells.
- Findings offer new avenues for safer senolytic therapies against aging, inflammaging, and cancer.

