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Updated: Feb 24, 2026

The Clinical Application of Tumor Treating Fields Therapy in Glioblastoma
Published on: April 16, 2019
The Evolving Role of Tumor Treating Fields in Managing Glioblastoma: Guide for Oncologists
Stuart H Burri1,2, Vinai Gondi3,4, Paul D Brown5
1Levine Cancer Institute.
Abstract:
Glioblastoma (GBM) is a devastating brain tumor with poor prognosis despite advances in surgery, radiation, and chemotherapy. Survival of patients with glioblastoma remains poor, with only 1 in 4 patients alive at 2 years, and a 5-year survival rate of about 5%. Recurrence is nearly universal and, after recurrence, prognosis is poor with very short progression-free survival and overall survival (OS). Various salvage chemotherapy strategies have been applied with limited success. Tumor Treating Fields (TTFields) are a novel treatment modality approved for treatment of either newly diagnosed or recurrent GBM. TTFields therapy involves a medical device and transducer arrays to provide targeted delivery of low intensity, intermediate frequency, alternating electric fields to produce antimitotic effects selective for rapidly dividing tumor cells with limited toxicity. In the phase 3 EF-14 trial, TTFields plus temozolomide provided significantly longer progression-free survival and OS compared with temozolomide alone in patients with newly diagnosed GBM after initial chemoradiotherapy. The addition of TTFields to standard therapy improved median OS from 15.6 to 20.5 months (P=0.04). In the phase 3 EF-11 trial, for recurrent GBM, TTFields provided comparable efficacy as investigator's choice systemic therapy, with improved patient-reported quality of life and a lower incidence of serious adverse events. Primary toxicity associated with TTFields is skin irritation generally managed with array relocation and topical treatments including antibiotics and steroids. TTFields therapy has demonstrated proven efficacy in management of GBM, including improvement in OS for patients with newly diagnosed GBM, and is under current investigation in other brain and extracranial tumors.
Insights
Tumor Treating Fields (TTFields) offer a new glioblastoma (GBM) treatment. TTFields, combined with chemotherapy, significantly improved overall survival for newly diagnosed GBM patients and showed comparable efficacy for recurrent GBM.
Area of Science:
- Neuro-oncology
- Medical physics
- Oncology
Background:
- Glioblastoma (GBM) is an aggressive brain tumor with a very poor prognosis.
- Current treatments including surgery, radiation, and chemotherapy offer limited survival benefits.
- Tumor Treating Fields (TTFields) represent a novel therapeutic approach for GBM management.
Purpose of the Study:
- To evaluate the efficacy and safety of TTFields in treating both newly diagnosed and recurrent glioblastoma.
- To compare TTFields combined with standard therapy against standard therapy alone.
- To assess TTFields as a treatment option for recurrent GBM compared to systemic therapies.
Main Methods:
- Phase 3 clinical trials (EF-14 and EF-11) were conducted.
- TTFields therapy utilizes a medical device delivering low-intensity, intermediate-frequency electric fields.
- Antimitotic effects are targeted towards rapidly dividing tumor cells with minimal toxicity.
Main Results:
- In newly diagnosed GBM, TTFields plus temozolomide significantly improved progression-free survival and overall survival (median OS increased from 15.6 to 20.5 months).
- For recurrent GBM, TTFields demonstrated comparable efficacy to investigator's choice systemic therapy.
- TTFields therapy showed improved patient-reported quality of life and fewer serious adverse events in recurrent GBM patients.
Conclusions:
- TTFields therapy is an effective treatment modality for glioblastoma, improving survival outcomes.
- TTFields offer a viable and less toxic alternative for recurrent GBM management.
- Ongoing investigations explore TTFields for other brain and extracranial tumors.
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