Investigator

Thomas L. Ekstrom

Postdoctoral Fellow · Dana-Farber Cancer Institute, Molecular Oncology

About

TLEThomas L. Ekstrom
Papers(2)
Repurposing Ceritinib…VLX600 Disrupts Homol…
Collaborators(6)
Arun KanakkantharaValentina ZanfagninAaron S. MansfieldAnn L. ObergNicholas M. PathoulasScott H. Kaufmann
Institutions(2)
Mayo ClinicMassachusetts General…

Papers

Repurposing Ceritinib Induces DNA Damage and Enhances PARP Inhibitor Responses in High-Grade Serous Ovarian Carcinoma

Abstract PARP inhibitors (PARPi) have activity in homologous recombination (HR) repair-deficient, high-grade serous ovarian cancers (HGSOC). However, even responsive tumors develop PARPi resistance, highlighting the need to delay or prevent the appearance of PARPi resistance. Here, we showed that the ALK kinase inhibitor ceritinib synergizes with PARPis by inhibiting complex I of the mitochondrial electron transport chain, which increases production of reactive oxygen species (ROS) and subsequent induction of oxidative DNA damage that is repaired in a PARP-dependent manner. In addition, combined treatment with ceritinib and PARPi synergized in HGSOC cell lines irrespective of HR status, and a combination of ceritinib with the PARPi olaparib induced tumor regression more effectively than olaparib alone in HGSOC patient-derived xenograft (PDX) models. Notably, the ceritinib and olaparib combination was most effective in PDX models with preexisting PARPi sensitivity and was well tolerated. These findings unveil suppression of mitochondrial respiration, accumulation of ROS, and subsequent induction of DNA damage as novel effects of ceritinib. They also suggest that the ceritinib and PARPi combination warrants further investigation as a means to enhance PARPi activity in HGSOC, particularly in tumors with preexisting HR defects. Significance: The kinase inhibitor ceritinib synergizes with PARPi to induce tumor regression in ovarian cancer models, suggesting that ceritinib combined with PARPi may be an effective strategy for treating ovarian cancer.

10Works
2Papers
6Collaborators
Cell Line, TumorOvarian NeoplasmsPancreatic NeoplasmsCarcinoma, Pancreatic DuctalApoptosisCarcinoma, Ovarian EpithelialDrug Resistance, NeoplasmXenograft Model Antitumor Assays

Positions

2026–

Postdoctoral Fellow

Dana-Farber Cancer Institute · Molecular Oncology

2018–

Graduate Research Employment Program

Mayo Clinic · Oncology

2017–

Undergraduate Research Employment Program

Mayo Clinic · Center for Clinical and Translational Science

Education

2025

PhD

Robert Bosch Center for Tumor Diseases · Molecular Cancer Epigenetics

2025

PhD

Mayo Clinic · Molecular Pharmacology and Experimental Therapeutics

2018

Bachelor of Science in Health Sciences

University of Minnesota Rochester