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Updated: Jan 27, 2026

Tumor Treating Field Therapy in Combination with Bevacizumab for the Treatment of Recurrent Glioblastoma
Published on: October 27, 2014
Longitudinal heterogeneity in glioblastoma: moving targets in recurrent versus primary tumors
Niklas Schäfer1,2, Gerrit H Gielen3, Laurèl Rauschenbach2,4,5
1Division of Clinical Neurooncology, Department of Neurology, University Hospital Bonn, 53127, Bonn, Germany.
Background:
Molecularly targeted therapies using receptor inhibitors, small molecules or monoclonal antibodies are routinely applied in oncology. Verification of target expression should be mandatory prior to initiation of therapy, yet, determining the expression status is most challenging in recurrent glioblastoma (GBM) where most patients are not eligible for second-line surgery. Because very little is known on the consistency of expression along the clinical course we here explored common drug targets in paired primary vs. recurrent GBM tissue samples.
Methods:
Paired surgical tissue samples were derived from a homogeneously treated cohort of 34 GBM patients. All patients received radiotherapy and temozolomide chemotherapy. Verification of common drug targets included immunohistological analysis of PDGFR-β, FGFR-2, FGFR-3, and mTOR-pathway component (phospho-mTORSer2448) as well as molecular, MLPA-based analysis of specific copy number aberrations at the gene loci of ALK, PDGFRA, VEGFR2/KDR, EGFR, MET, and FGFR1.
Results:
Paired tumor tissue exhibited significant changes of expression in 9 of the 10 investigated druggable targets (90%). Only one target (FGFR1) was found "unchanged", since dissimilar expression was observed in only one of the 34 paired tumor tissue samples. All other targets were variably expressed with an 18-56% discordance rate between primary and recurrent tissue.
Conclusions:
The high incidence of dissimilar target expression status in clinical samples from primary vs. recurrent GBM suggests clinically relevant heterogeneity along the course of disease. Molecular target expression, as determined at primary diagnosis, may not necessarily present rational treatment clues for the clinical care of recurrent GBM. Further studies need to analyze the therapeutic impact of longitudinal heterogeneity in GBM.
Insights
Target expression in recurrent glioblastoma (GBM) frequently changes from initial diagnosis. This molecular heterogeneity means initial treatment targets may not be effective for recurrent GBM, necessitating further study.
Area of Science:
- Oncology
- Molecular Biology
- Neuro-oncology
Background:
- Molecularly targeted therapies are standard in oncology.
- Verifying target expression before treatment is crucial.
- Assessing target expression in recurrent glioblastoma (GBM) is challenging due to limited surgical options.
Purpose of the Study:
- To investigate the consistency of common drug target expression in paired primary versus recurrent GBM tissue samples.
- To understand molecular heterogeneity in GBM during disease progression.
Main Methods:
- Analysis of paired primary and recurrent GBM tissue from 34 patients treated with radiotherapy and temozolomide.
- Immunohistological analysis of PDGFR-β, FGFRs, and phospho-mTOR.
- MLPA-based analysis of gene copy number aberrations for ALK, PDGFRA, VEGFR2/KDR, EGFR, MET, and FGFR1.
Main Results:
- Significant expression changes were observed in 90% of the 10 investigated druggable targets.
- Only FGFR1 showed consistent expression across primary and recurrent samples.
- All other targets exhibited variable expression, with discordance rates between 18-56%.
Conclusions:
- High heterogeneity in target expression between primary and recurrent GBM is clinically relevant.
- Initial molecular target status may not predict treatment efficacy for recurrent GBM.
- Further research is needed to explore the therapeutic implications of longitudinal heterogeneity in GBM.
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