Perspective on the use of DNA repair inhibitors as a tool for imaging and radionuclide therapy of glioblastoma

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Authors

Everix, Liesbeth
Nair, Shankari
Goethals, Ingeborg
Sathekge, Mike Machaba
Ebenhan, Thomas
Vandevoorde, Charlot
Bolcaen, Julie

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MDPI

Abstract

Despite numerous innovative treatment strategies, the treatment of glioblastoma (GB) remains challenging. With the current state-of-the-art therapy, most GB patients succumb after about a year. In the evolution of personalized medicine, targeted radionuclide therapy (TRT) is gaining momentum, for example, to stratify patients based on specific biomarkers. One of these biomarkers is deficiencies in DNA damage repair (DDR), which give rise to genomic instability and cancer initiation. However, these deficiencies also provide targets to specifically kill cancer cells following the synthetic lethality principle. This led to the increased interest in targeted drugs that inhibit essential DDR kinases (DDRi), of which multiple are undergoing clinical validation. In this review, the current status of DDRi for the treatment of GB is given for selected targets: ATM/ATR, CHK1/2, DNA-PK, and PARP. Furthermore, this review provides a perspective on the use of radiopharmaceuticals targeting these DDR kinases to (1) evaluate the DNA repair phenotype of GB before treatment decisions are made and (2) induce DNA damage via TRT. Finally, by applying in-house selection criteria and analyzing the structural characteristics of the DDRi, four drugs with the potential to become new therapeutic GB radiopharmaceuticals are suggested.

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Keywords

Glioblastoma, Radiochemistry, Theranostics, Molecular imaging, DNA repair inhibitors, Radiopharmaceuticals, Nuclear medicine, Deoxyribonucleic acid (DNA), Targeted radionuclide therapy (TRT), DDR kinases (DDRi), DNA damage repair (DDR)

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Citation

Everix, L.; Nair, S.; Driver, C.H.S.; Goethals, I.; Sathekge, M.M.; Ebenhan, T.; Vandevoorde, C.; Bolcaen, J. Perspective on the Use of DNA Repair Inhibitors as a Tool for Imaging and Radionuclide Therapy of Glioblastoma. Cancers 2022, 14, 1821. https://doi.org/10.3390/cancers14071821.