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Published on: May 15, 2019
Characterization of the HDAC/PI3K inhibitor CUDC-907 as a novel senolytic
Fares Al-Mansour1,2,3, Abdullah Alraddadi1,2, Buwei He1,4
1Mechanisms of Cancer and Aging Laboratory, University of Leicester, Leicester LE1 7RH, United Kingdom.
Abstract:
The accumulation of senescent cells has an important role in the phenotypical changes observed in ageing and in many age-related pathologies. Thus, the strategies designed to prevent these effects, collectively known as senotherapies, have a strong clinical potential. Senolytics are a type of senotherapy aimed at specifically eliminating senescent cells from tissues. Several small molecule compounds with senolytic properties have already been identified, but their specificity and range of action are variable. Because of this, potential novel senolytics are being actively investigated. Given the involvement of HDACs and the PI3K pathway in senescence, we hypothesized that the dual inhibitor CUDC-907, a drug already in clinical trials for its antineoplastic effects, could have senolytic effects. Here, we show that CUDC-907 was indeed able to selectively induce apoptosis in cells driven to senesce by p53 expression, but not when senescence happened in the absence of p53. Consistent with this, CUDC-907 showed senolytic properties in different models of stress-induced senescence. Our results also indicate that the senolytic functions of CUDC-907 depend on the inhibitory effects of both HDACs and PI3K, which leads to an increase in p53 and a reduction in BH3 pro-survival proteins. Taken together, our results show that CUDC-907 has the potential to be a clinically relevant senolytic in pathological conditions in which stress-induced senescence is involved.
Insights
The dual inhibitor CUDC-907 selectively eliminates senescent cells by inducing apoptosis, particularly in p53-dependent senescence. This senolytic drug shows promise for age-related diseases involving cellular senescence.
Area of Science:
- Cellular senescence
- Aging research
- Drug discovery
Background:
- Cellular senescence contributes to aging and age-related diseases.
- Senotherapies, including senolytics, aim to clear senescent cells.
- Existing senolytics have variable specificity and efficacy.
Purpose of the Study:
- To investigate the potential senolytic effects of the dual inhibitor CUDC-907.
- To explore the mechanisms underlying CUDC-907's senolytic activity.
- To assess CUDC-907's clinical relevance in age-related pathologies.
Main Methods:
- Treatment of senescent cells with CUDC-907.
- Assessment of apoptosis induction in p53-dependent and independent senescence.
- Evaluation of senolytic properties in stress-induced senescence models.
- Analysis of the roles of HDAC and PI3K inhibition.
Main Results:
- CUDC-907 selectively induced apoptosis in p53-driven senescent cells.
- Senolytic activity was observed in various stress-induced senescence models.
- The drug's function relies on inhibiting HDACs and PI3K, increasing p53, and reducing BH3 proteins.
Conclusions:
- CUDC-907 demonstrates selective senolytic properties, particularly in p53-dependent senescence.
- The drug's mechanism involves dual inhibition of HDACs and PI3K pathways.
- CUDC-907 holds potential as a clinical senolytic for conditions involving stress-induced senescence.
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