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An untapped window of opportunity for glioma: targeting therapy-induced senescence prior to recurrence
Cécile Riviere-Cazaux, Lucas P. Carlstrom, Bryan J. Neth, Ian Olson, Karishma Rajani, Masum Rahman, Samar Ikram, Moustafa Mansour, Bipasha Mukherjee, Arthur E. Warrington, Susan Short, Thomas von Zglinicki, Desmond Brown, Sandeep Burma, Tamar Tchkonia
npj Precision Oncology · 2023 · ▲ 33 citations
Abstract
High-grade gliomas are primary brain tumors that are incredibly refractory long-term to surgery and chemoradiation, with no proven durable salvage therapies for patients that have failed conventional treatments. Post-treatment, the latent glioma and its microenvironment are characterized by a senescent-like state of mitotic arrest and a senescence(definition)-associated secretory phenotype (SASP) induced by prior chemoradiation. Although senescence was once thought to be irreversible, recent evidence has demonstrated that cells may escape this state and re-enter the cell cycle, contributing to tumor recurrence. Moreover, senescent tumor cells could spur the growth of their non-senescent counterparts, thereby accelerating recurrence. In this review, we highlight emerging evidence supporting the use of senolytic agents to ablate latent, senescent-like cells that could contribute to tumor recurrence. We also discuss how senescent cell clearance can decrease the SASP within the tumor microenvironment thereby reducing tumor aggressiveness at recurrence. Finally, senolytics(definition) could improve the long-term sequelae of prior therapy on cognition and bone marrow function. We critically review the senolytic drugs currently under preclinical and clinical investigation and the potential challenges that may be associated with deploying senolytics against latent glioma. In conclusion, senescence in glioma and the microenvironment are critical and potential targets for delaying or preventing tumor recurrence and improving patient functional outcomes through senotherapeutics.
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- 10.1038/s41698-023-00476-8
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- 2026-06-29 MST
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APA
Riviere-Cazaux, C., Carlstrom, L.P., Neth, B.J., Olson, I., Rajani, K., Rahman, M., Ikram, S., Mansour, M., Mukherjee, B., Warrington, A.E., Short, S., Zglinicki, T.V., Brown, D., Burma, S., Tchkonia, T., Schafer, M., Baker, D.J., Kizilbash, S.H., Kirkland, J.L., & Burns, T.C. (2023). An untapped window of opportunity for glioma: targeting therapy-induced senescence prior to recurrence. <em>npj Precision Oncology</em>. https://doi.org/10.1038/s41698-023-00476-8
Vancouver
Riviere-Cazaux C, Carlstrom LP, Neth BJ, Olson I, Rajani K, Rahman M, et al. An untapped window of opportunity for glioma: targeting therapy-induced senescence prior to recurrence. npj Precision Oncology. 2023. doi:10.1038/s41698-023-00476-8.
BibTeX
@article{ccile2023Anunta,
title = {An untapped window of opportunity for glioma: targeting therapy-induced senescence prior to recurrence},
author = {Cécile Riviere-Cazaux and Lucas P. Carlstrom and Bryan J. Neth and Ian Olson and Karishma Rajani and Masum Rahman and Samar Ikram and Moustafa Mansour and Bipasha Mukherjee and Arthur E. Warrington and Susan Short and Thomas von Zglinicki and Desmond Brown and Sandeep Burma and Tamar Tchkonia and Marissa Schafer and Darren J. Baker and Sani H. Kizilbash and James L. Kirkland and Terry C. Burns},
journal = {npj Precision Oncology},
year = {2023},
doi = {10.1038/s41698-023-00476-8},
}
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