Improved pharmacodynamic (PD) assessment of low dose PARP inhibitor PD activity for radiotherapy and chemotherapy combination trials

Publication date

2018-03

Authors

de Haan, Rosemarie
Pluim, Dick
van Triest, Baukelien
van den Heuvel, Michel
Peulen, Heike
van Berlo, Damien
George, Jay
Verheij, Marcel
Schellens, Jan H MISNI 0000000042971906
Vens, Conchita

Editors

Advisors

Supervisors

Document Type

Article
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License

cc_by_nc_nd

Abstract

BACKGROUND: PARP inhibitors are currently evaluated in combination with radiotherapy and/or chemotherapy. As sensitizers, PARP inhibitors are active at very low concentrations therefore requiring highly sensitive pharmacodynamic (PD) assays. Current clinical PD-assays partly fail to provide such sensitivities. The aim of our study was to enable sensitive PD evaluation of PARP inhibitors for clinical sensitizer development. MATERIAL AND METHODS: PBMCs of healthy individuals and of olaparib and radiotherapy treated lung cancer patients were collected for ELISA-based PD-assays. RESULTS: PAR-signal amplification by ex vivo irradiation enabled an extended quantification range for PARP inhibitory activities after ex vivo treatment with inhibitors. This "radiation-enhanced-PAR" (REP) assay provided accurate IC50 values thereby also revealing differences among healthy individuals. Implemented in clinical radiotherapy combination Phase I trials, the REP-assay showed sensitive detection of PARP inhibition in patients treated with olaparib and establishes strong PARP inhibitory activities at low daily doses. CONCLUSIONS: Combination trials of radiotherapy and novel targeted agent(s) often require different and more sensitive PD assessments than in the monotherapy setting. This study shows the benefit and relevance of sensitive and adapted PD-assays for such combination purposes and provides proof of clinically relevant cellular PARP inhibitory activities at low daily olaparib doses.

Keywords

Pharmacodynamic assay, PARP inhibitor, Chemoradiation, Olaparib (Lynparza tm), RT combination trials, SDG 3 - Good Health and Well-being

Citation

de Haan, R, Pluim, D, van Triest, B, van den Heuvel, M, Peulen, H, van Berlo, D, George, J, Verheij, M, Schellens, J H M & Vens, C 2018, 'Improved pharmacodynamic (PD) assessment of low dose PARP inhibitor PD activity for radiotherapy and chemotherapy combination trials', Radiotherapy and Oncology, vol. 126, no. 3, pp. 443-449. https://doi.org/10.1016/j.radonc.2017.10.017