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NCT Number: NCT07712770

Pilot Radioembolisation Clinical Trial Assessing Safety and Efficacy in Recurrent Glioma

This study is testing a new way of treating brain tumours using tiny radioactive beads called SIR-Spheres® (90Y-labelled Resin Microspheres). These microspheres are placed into the blood vessels that feed the tumour. The treatment gives off radiation inside the tumour to try to stop it from growing.

This type of treatment is called Selective Internal Radiation Therapy (SIRT), Transarterial Radioembolisation (TARE), or radioembolisation. It is already an accepted treatment for patients with liver cancer. In this study, we are testing if this treatment can be done safely in the brain and how well it works.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Early Phase 1

Primary location

Austin Hospital

Melbourne, Victoria, 3084, Australia

Location contact

Hui Gan Professor, MBBS, PhD in Medical Oncology

CONTACT

[email protected]

03 9496 3088

About this study

This study is testing a new approach to treat people with the most aggressive type of adult brain tumour, glioblastoma. It will determine whether a treatment called selective internal radiation therapy (SIRT) (also know as Transarterial Radioembolisation (TARE), or radioembolisation) is safe and effective in patients with recurrent or progressive glioblastoma. Small radioactive beads (SIR-Spheres®) are administered directly into the blood vessels that feed the tumour. This aims to selectively damage cancer cells and spare healthy tissue. PRECISE will investigate whether SIRT may reduce the volume of the tumour or slow its growth. Participants will undergo a detailed assessment to confirm they are suitable for the treatment. Those enrolled will have a planning procedure to map the blood vessels supplying the tumour, followed by SIRT treatment. Participants will also have scans and medical follow-ups after the procedure to monitor how they are going and whether the treatment is working. Safety of participants will be closely monitored by a team of specialist doctors. This study may represent the initial step towards a new treatment option for people with gliomas, who currently have very few alternatives once standard treatments have failed.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • Age ≥18 years at the time of screening
  • Histomolecular diagnosis of IDH-wildtype glioblastoma (as per WHO 2021)
  • Prior treatment with radiotherapy and an alkylating agent
  • Presence of measurable disease on brain MRI, as defined by RANO 2.0 criteria
  • Radiologically confirmed disease progression as per RANO 2.0 criteria
  • Lesion confined to a single focus, with a maximum diameter ≤6 cm, and located in a vascular territory amenable to selective intra-arterial catheterisation as assessed on baseline imaging and confirmed by planning angiography, cone beam CT, and [99mTc]Tc-MAA SPECT/CT (where available)
  • Stable neurological status; patients with epilepsy may be included if seizures are controlled on a stable dose of anti-epileptic medication
  • ECOG performance status 0-2
  • Estimated life expectancy of ≥3 months, in the opinion of the investigator
  • Adequate haematologic, renal, hepatic, and coagulation function at screening, defined as:
  • Haemoglobin ≥9 g/dL
  • Absolute neutrophil count ≥1.5 x 109/L
  • Platelet count ≥100 x 109/L
  • Serum creatinine ≤1.5 x ULN, or creatinine clearance ≥30 mL/min (Cockcroft-Gault formula)
  • Total bilirubin ≤1.5 x ULN (except patients with known Gilbert's syndrome)
  • Aspartate aminotransferase (AST) and alanine transaminase (ALT) ≤2.5 x ULN
  • International normalized ratio (INR) ≤1.5 x ULN
  • Prothrombin time (PT) or activated partial thromboplastin time (aPTT) ≤1.5 x ULN
  • Ability to understand and comply with study requirements and provide written informed consent.

Exclusion criteria

  • Multifocal glioma recurrence
  • Tumour located in the posterior fossa or involving/risking critical subcortical structures (e.g. thalamus, hypothalamus, basal ganglia, internal capsule, cerebral peduncle, midbrain, brainstem, or optic pathways)
  • Prior treatment with VEGF inhibitors
  • Prior re-irradiation for progressive or recurrent disease
  • Any local (surgery or radiotherapy) or systemic anti-cancer therapy within 28 days prior to the planned dose of the investigational treatment
  • Concurrent use of any anti-cancer therapies, investigational drugs, or biological agents not specified in the protocol
  • Contraindications to MRI, including but not limited to non-compatible implantable devices or severe claustrophobia
  • Contraindications to catheter-based angiography, including but not limited to known bleeding disorders, significant vascular abnormalities precluding safe access, and severe allergy to contrast agents
  • Pregnancy or breastfeeding. Women of childbearing potential and men with partners of childbearing potential must agree to use effective contraception during the study and for at least 4 months after the last procedure.
  • Any severe or uncontrolled medical condition that, in the investigator's judgement, would pose an unacceptable risk to the patient or interfere with protocol compliance
  • Cognitive or psychiatric conditions that would limit the ability to provide informed consent or adhere to study procedures
  • Known hypersensitivity or allergy to 90Y-resin microspheres or any component of the investigational product

Treatment and study plan

SIR-Spheres®

Device

Single administration of SIR-Spheres® on Day 1 with optional one-time retreatment if clinically indicated

Other names: 90Y-labelled Resin Microspheres

Primary outcomes

  1. Safety - Treatment-related adverse events

    Time frame: From SIR-sphere administration (Day 1) to 30 days post SIR-sphere administration.

    Rate of any treatment-related adverse events within the first 30 days after TARE, according to CTCAE, version 6.0.

  2. Safety - Severe treatment-related adverse events

    Time frame: From SIR-sphere administration (Day 1) to 30 days post SIR-sphere administration.

    Rate of any severe treatment-related adverse events (grade ≥3-5) within the first 30 days after TARE, according to CTCAE version 6.0

  3. 30-day mortality

    Time frame: From SIR-sphere administration (Day 1) to 30 days post SIR-sphere administration.

    Rate of all-cause mortality within 30 days following TARE.

Secondary outcomes

  1. Technical success of TARE

    Time frame: 6 months after the last patient has been enrolled

    Technical success rate, defined as successful selective catheterisation and administration of SIR-Spheres® to the target volume without significant non-target deposition.

  2. Confirmation of dose delivery

    Time frame: 6 months after the last patient has been enrolled.

    Confirmation of dose delivery to the target volume as assessed by post-treatment PET/CT.

  3. Objective response rate (ORR)

    Time frame: 6 months after the last patient has been enrolled

    Objective response rate (ORR) according to RANO 2.0 and PET RANO 1.0 criteria.

  4. Disease control rate (DCR)

    Time frame: 6 months after the last patient has been enrolled

    Disease control rate (DCR) according to RANO 2.0 and PET RANO 1.0 criteria.

  5. Clinical and radiographic progression-free survival (PFS)

    Time frame: 6 months after the last patient has been enrolled

    Clinical and radiographic progression-free survival (PFS) according to NANO, RANO 2.0 and PET RANO 1.0 criteria.

  6. Overall survival (OS)

    Time frame: Up to 6 months after the last patient has been enrolled.

    Overall survival (OS)

  7. Change from baseline in health-related quality of life measured using the European Organisation for Research and Treatment of Cancer Quality of Life Questionnaire-Core 30 (EORTC QLQ-C30).

    Time frame: Assessed up to 6 months after enrolment

    The EORTC QLQ-C30 consists of multi-item functional and symptom scales transformed to scores ranging from 0 to 100. Higher scores indicate better functioning/global health status on the functional and global health scales, whereas higher scores indicate worse symptom burden on the symptom scales.

  8. Change from baseline in brain cancer-specific quality of life measured using the European Organisation for Research and Treatment of Cancer Brain Neoplasm Module (EORTC QLQ-BN20).

    Time frame: Assessed up to 6 months after enrolment

    The EORTC QLQ-BN20 comprises symptom scales transformed to scores ranging from 0 to 100, with higher scores indicating greater symptom burden (worse quality of life).

  9. Safety following repeat administration of SIR-Spheres® administration

    Time frame: Assessed up to 6 months after enrolment

    Rate and severity of treatment-related adverse events in participants who proceed to a second SIR-Spheres® administration compared with participants receiving a single administration.

Other outcomes

  1. To evaluate the correlation between organ at risk radiation dosimetry and adverse events

    Time frame: 6 months after the last patient has been enrolled

    Correlation between absorbed dose (Gy) to normal brain, as estimated on post-treatment 90Y PET, and the incidence of treatment-related adverse events, as classified by CTCAE version 6.0

  2. To evaluate the concordance between pre-treatment predicted and post-treatment delivered absorbed dose distributions to tumour and normal brain using voxel-based dosimetry

    Time frame: 6 months after the last patient has been enrolled

    Correlation between absorbed dose estimates to tumour and normal brain derived from pre-treatment [99mTc]Tc-MAA SPECT/CT and post-treatment 90Y PET dosimetry

  3. To investigate circulating biomarkers and potential mechanisms of resistance, for patients treated with this approach.

    Time frame: 6 months after the last patient has been enrolled

    Change in circulating biomarker levels from baseline over time, including the identification of molecular or cellular markers associated with treatment response or resistance.

Sponsors and collaborators

Lead sponsor

Olivia Newton-John Cancer Research Institute

Other

Collaborators

  • Austin Health

Registry information

Official study title

Pilot Radioembolisation Clinical Trial Assessing Safety and Efficacy in Recurrent Glioma (PRECISE)

Acronym: PRECISE

Important dates

Study start
2026
Primary completion
2028
Study completion
2028
First posted
Jul 17, 2026
Registry last updated
Jul 17, 2026

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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