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Abrogation of Cellular Senescence Induced by Temozolomide in Glioblastoma Cells: Search for Senolytics
Lea Beltzig1, Markus Christmann1, Bernd Kaina1
1Institute of Toxicology, University Medical Center Mainz, Obere Zahlbacher Str. 67, D-55131 Mainz, Germany.
Abstract:
A first-line therapeutic for high-grade glioma, notably glioblastoma (GBM), is the DNA methylating drug temozolomide (TMZ). Previously, we showed that TMZ induces not only apoptosis and autophagy, but also cellular senescence (CSEN). We presented the hypothesis that GBM cells may escape from CSEN, giving rise to recurrent tumors. Furthermore, the inflammatory phenotype associated with CSEN may attenuate chemotherapy and drive tumor progression. Therefore, treatments that specifically target senescent cells, i.e., senolytic drugs, may lead to a better outcome of GBM therapy by preventing recurrences and tumor inflammation. Here, we tested Bcl-2 targeting drugs including ABT-737, ABT-263 (navitoclax), several natural substances such as artesunate, fisetin and curcumin as well as lomustine (CCNU) and ionizing radiation (IR) for their senolytic capacity in GBM cells. Additionally, several proteins involved in the DNA damage response (DDR), ATM, ATR, Chk1/2, p53, p21, NF-kB, Rad51, PARP, IAPs and autophagy, a pathway involved in CSEN induction, were tested for their impact in maintaining CSEN. Treatment of GBM cells with a low dose of TMZ for 8-10 days resulted in >80% CSEN, confirming CSEN to be the major trait induced by TMZ. To identify senolytics, we treated the senescent population with the compounds of interest and found that ABT-737, navitoclax, chloroquine, ATMi, ATRi, BV-6, PX-866 and the natural compounds fisetin and artesunate exhibit senolytic activity, inducing death in senescent cells more efficiently than in proliferating cells. Curcumin showed the opposite effect. No specific effect on CSEN cells was observed by inhibition of Chk1/Chk2, p21, NF-kB, Rad51 and PARP. We conclude that these factors neither play a critical role in maintaining TMZ-induced CSEN nor can their inhibitors be considered as senolytics. Since IR and CCNU did not exhibit senolytic activity, radio- and chemotherapy with alkylating drugs is not designed to eliminate TMZ-induced senescent cancer cells.
Insights
Temozolomide (TMZ) induces cellular senescence (CSEN) in glioblastoma (GBM). Certain drugs, including ABT-737, navitoclax, fisetin, and artesunate, show senolytic activity, eliminating senescent GBM cells, which may improve treatment outcomes.
Area of Science:
- Oncology
- Cell Biology
- Pharmacology
Background:
- Temozolomide (TMZ) is a first-line treatment for glioblastoma (GBM).
- TMZ induces apoptosis, autophagy, and cellular senescence (CSEN) in GBM cells.
- CSEN may contribute to tumor recurrence and inflammation, potentially attenuating chemotherapy efficacy.
Purpose of the Study:
- To investigate the senolytic potential of various compounds against TMZ-induced senescent GBM cells.
- To evaluate the role of DNA damage response (DDR) proteins and autophagy in maintaining CSEN.
- To identify therapeutic strategies to eliminate senescent GBM cells and prevent tumor recurrence.
Main Methods:
- GBM cells were treated with low-dose TMZ to induce CSEN.
- Senescent cells were subsequently treated with candidate senolytic drugs (e.g., ABT-737, navitoclax, fisetin, artesunate) and inhibitors of DDR proteins.
- The senolytic activity of compounds was assessed by their ability to induce death in senescent cells more effectively than in proliferating cells.
Main Results:
- Low-dose TMZ treatment for 8-10 days induced >80% CSEN in GBM cells.
- ABT-737, navitoclax, chloroquine, ATMi, ATRi, BV-6, PX-866, fisetin, and artesunate demonstrated senolytic activity.
- Curcumin exhibited the opposite effect, while inhibitors of Chk1/Chk2, p21, NF-kB, Rad51, and PARP showed no specific effect on CSEN cells.
- Ionizing radiation (IR) and lomustine (CCNU) did not exhibit senolytic activity.
Conclusions:
- Specific compounds, including Bcl-2 inhibitors and natural products like fisetin and artesunate, possess senolytic activity against TMZ-induced senescent GBM cells.
- Inhibitors of key DDR proteins and autophagy regulators are not effective senolytics for TMZ-induced CSEN.
- Conventional radio- and chemotherapy with alkylating agents are not designed to eliminate senescent GBM cells, suggesting a need for novel therapeutic approaches.
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