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Evaluation of the Heat Shock Protein 90 Inhibitor Ganetespib as a Sensitizer to Hyperthermia-Based Cancer Treatments

Authors :
Enzo M. Scutigliani
Yongxin Liang
Marloes IJff
Hans Rodermond
Xionge Mei
Miriam P. Korver
Vaneesha S. Orie
Ron A. Hoebe
Daisy I. Picavet
Arlene Oei
Roland Kanaar
Przemek M. Krawczyk
Graduate School
Medical Biology
AGEM - Amsterdam Gastroenterology Endocrinology Metabolism
Center of Experimental and Molecular Medicine
CCA - Cancer biology and immunology
Molecular Genetics
Source :
Cancers, 14(21):5250. Multidisciplinary Digital Publishing Institute (MDPI), Cancers; Volume 14; Issue 21; Pages: 5250
Publication Year :
2022

Abstract

Hyperthermia is being used as a radio- and chemotherapy sensitizer for a growing range of tumor subtypes in the clinic. Its potential is limited, however, by the ability of cancer cells to activate a protective mechanism known as the heat stress response (HSR). The HSR is marked by the rapid overexpression of molecular chaperones, and recent advances in drug development make their inhibition an attractive option to improve the efficacy of hyperthermia-based therapies. Our previous in vitro work showed that a single, short co-treatment with a HSR (HSP90) inhibitor ganetespib prolongs and potentiates the effects of hyperthermia on DNA repair, enhances hyperthermic sensitization to radio- and chemotherapeutic agents, and reduces thermotolerance. In the current study, we first validated these results using an extended panel of cell lines and more robust methodology. Next, we examined the effects of hyperthermia and ganetespib on global proteome changes. Finally, we evaluated the potential of ganetespib to boost the efficacy of thermo-chemotherapy and thermo-radiotherapy in a xenograft murine model of cervix cancer. Our results revealed new insights into the effects of HSR inhibition on cellular responses to heat and show that ganetespib could be employed to increase the efficacy of hyperthermia when combined with radiation.

Details

Language :
English
ISSN :
20726694
Database :
OpenAIRE
Journal :
Cancers, 14(21):5250. Multidisciplinary Digital Publishing Institute (MDPI), Cancers; Volume 14; Issue 21; Pages: 5250
Accession number :
edsair.doi.dedup.....b7d50a4880dffeeb81fc955ae73e2fa6