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PET and MRI Guided Irradiation of a Glioblastoma Rat Model Using a Micro-irradiator
Published on: December 28, 2017
Neoadjuvant targeting of glioblastoma multiforme with radiolabeled DOTAGA-substance P--results from a phase I study
Dominik Cordier1, Flavio Forrer, Stefan Kneifel
1Department of Neurosurgery, University Hospital Basel, Spitalstrasse 21, 4031, Basel, Switzerland. cordierd@uhbs.ch
Abstract:
Complete surgical resection beyond tumor margins cannot be achieved in glioblastoma multiforme (GBM) because of infiltrative nature. In several cancers, neoadjuvant treatment has been implemented to reduce the risk of tumor cell spreading during resection. In GBM, the objective of a neoadjuvant approach is reduction of tumor cells within the main tumor mass and beyond in the infiltration zone. Such an approach can only be performed if elevated intracranial pressure can be medically controlled. In a previous study with recurrent gliomas, we showed that local intratumoral injection of radiolabeled DOTAGA-substance P substantially inhibited further growth and led to radionecrotic transformation of the tumor (CCR 2006). We have now examined this modality as neoadjuvant treatment for GBM, primarily assessing feasibility, toxicity, the extent of resection, and functional outcome. After diagnosis of GBM, 17 patients were included in a prospective phase I study. Repetitive intratumoral injections of radiolabeled DOTAGA-substance P were performed, followed by surgical resection. Chemical synthesis, radiolabeling, and local injection of the peptidic vector [90Yttrium]-DOTAGA-substance P were described previously. Neoadjuvant injection of [90Y]-DOTAGA-substance P was feasible without decompensation of intracranial pressure. Prolonged application of corticosteroids was identified as the main risk factor for side effects. Fifteen patients stabilized or improved their functional status. The mean extent of resection in subsequent surgery was 96%. Neoadjuvant therapy of GBM using locally injected radiolabeled DOTAGA-substance P was feasible and of low toxicity. The high extent of resection and concomitant irradiation of tumor cells in the infiltration zone may be prognostically relevant.
Insights
Neoadjuvant intratumoral injection of [90Yttrium]-DOTAGA-substance P in glioblastoma multiforme (GBM) is feasible and well-tolerated. This approach aids in achieving a high extent of surgical resection and irradiating infiltrating tumor cells.
Area of Science:
- Neuro-oncology
- Radiopharmaceutical therapy
- Neoadjuvant cancer treatment
Background:
- Glioblastoma multiforme (GBM) is characterized by infiltrative growth, making complete surgical resection challenging.
- Neoadjuvant therapy aims to reduce tumor burden and minimize cancer cell spread during surgery.
- Previous studies demonstrated the efficacy of radiolabeled DOTAGA-substance P in recurrent gliomas.
Purpose of the Study:
- To evaluate the feasibility and toxicity of neoadjuvant intratumoral injection of [90Yttrium]-DOTAGA-substance P for glioblastoma multiforme (GBM).
- To assess the impact on the extent of surgical resection and patient functional outcomes.
- To investigate the potential prognostic relevance of this neoadjuvant approach.
Main Methods:
- A prospective phase I study involving 17 patients diagnosed with GBM.
- Repetitive intratumoral injections of [90Yttrium]-DOTAGA-substance P followed by surgical resection.
- Assessment of feasibility, toxicity, extent of resection, and functional status.
Main Results:
- Neoadjuvant [90Yttrium]-DOTAGA-substance P injection was feasible without increasing intracranial pressure.
- Prolonged corticosteroid use was identified as a risk factor for side effects.
- Fifteen patients showed stabilized or improved functional status, with a mean resection extent of 96%.
Conclusions:
- Neoadjuvant therapy for GBM using locally injected radiolabeled DOTAGA-substance P is feasible and demonstrates low toxicity.
- The high extent of resection achieved and the irradiation of tumor cells in the infiltration zone may hold prognostic significance.

