Proton Therapy Department, A. Tsyb Medical Radiological Research Center - branch of the National Medical Radiological Research Center
Obninsk, Kaluga Oblast, 249036, Russia
Location status: Recruiting
NCT Number: NCT07710040
The goal of this clinical trial is to learn if preopearative proton therapy (PPT) is tolerable in patients with High-grade brain gliomas. It will also learn about the influence on surgical procedure, clinical effects and safety of regular treatment.
The main questions it aims to answer are:
Does preoprative proton therapy well-tolerated? What maximal dose of PPT is safe?
Proposed Treatment Stages
1. Multidisciplinary board (neurosurgeon, radiation therapist, and medical oncologist) decision of patient enrollment. 2. Course of preoperative proton stereotactic radiotherapy (PSRT) directed at the tumor only: GTV=contrast-part of brain giloma, CTV=GTV. Dose regimens: first 3 patients - 4 Gy(RBE) × 5 fractions; subsequent 3 patients - 5 Gy(RBE) × 5 fractions; subsequent 3 patients - 6 Gy(RBE) × 5 fractions. RBE = Relative biological efficacy, equal 1.1 for protons. Should any information regarding unacceptable treatment toxicity emerge, the study will be terminated. 3. Microsurgical resection of the contrast-enhancing portion of the tumor using fluorescence microscopy and, when indicated, neurophysiological monitoring. 4. Contrast-enhanced MRI to assess the resection volume within the first 24-48 hours after surgery. 5. Follow-up evaluation - clinical, morphological, and radiological assessment of the effects of the preoperative and surgical treatment stages, performed 3-4 weeks after the surgical phase. 6. Standard treatment and follow-up: Chemoradiotherapy with a scanned proton beam combined with temozolomide 75 mg/m², given at 2 Gy × 30 fractions, to commence 4-6 weeks after surgery. Adjuvant chemotherapy with temozolomide 150-200 mg/m² on a 5/23 schedule (maintenance chemotherapy), for 12 cycles or until disease progression/unacceptable toxicity. 7. Follow-up - control examinations every 1 month after completion of chemoradiotherapy, then every 3 months for the first year.
Interested in participating?
Request Info18 year and older
All sexes
Interventional
Phase 1
Obninsk, Kaluga Oblast, 249036, Russia
Location status: Recruiting
High grade gliomas (HGG), especially glioblastomas, are among those disease, for which oncological science doesn't propose any improvements for several decades, since temozolomide became a part of therapy. Preoperative irradiation is a standard of care for various malignant diseases. Historically, for intracranial targets preoperative RT is a taboo. Besides, recent data from preoperative RT of brain metastasis showed promising results and good toxicity profile. We would like to investigate the hypotheses of preoprative proton short-course irradiation can be tolerable and potentially improve outcomes in HGG patients.
High-grade gliomas (astrocytomas CNS WHO grade 3-4, glioblastomas, etc) are the most common primary brain tumors, with an extremely poor survival prognosis and a median overall survival of approximately 15-18 months [1, 2]. Recent advances in drug therapy have, unfortunately, not made a substantial contribution to improving treatment outcomes. Therefore, novel approaches to enhance treatment efficacy are more relevant than ever, and over the past decades, the use of radiotherapy has indeed improved survival in these patients. The standard treatment protocol currently includes maximal safe surgical resection followed by chemoradiotherapy, which is initiated 4-6 weeks after surgery [3]. However, microscopic foci of tumor cells in the postoperative period may proliferate and become manifest even before the start of radiotherapy. A recent meta-analysis showed that 40-50 % of patients with high-grade gliomas experience disease progression already during the interval between surgery and adjuvant treatment [4]. Since complete tumor resection is virtually unattainable, intensification of preoperative treatment may represent an effective option, as it targets the disease at an earlier and potentially more vulnerable stage [5].
There is considerable interest in early treatment strategies for high-grade gliomas that target the pre-, intra-, or early postoperative tumor microenvironment [5]. Preoperative radiotherapy is of particular interest, given the encouraging results observed in many other tumor types; however, it has never been applied to high-grade gliomas before [6, 7, 8, 9]. The preoperative period offers more favorable therapeutic characteristics compared with the postoperative tumor microenvironment, including less tumor hypoxia and molecular heterogeneity, which may consequently enhance the effectiveness of irradiation at this stage [5]. Data from dose-escalation safety studies suggest that a radiation dose additional to the standard postoperative regimen (60 Gy/30 fractions) can be delivered safely, but it remains unclear whether dose escalation can improve patient outcomes [10]. Currently, there are only a limited number of studies on preoperative radiotherapy for high-grade gliomas at various stages of preclinical and clinical investigation [6, 11, 12].
Proton therapy is currently the most sparing modality of radiotherapy, allowing, through its unique dose-distribution characteristics, a significant reduction in exposure to normal tissues-a particularly important consideration when irradiating the brain [13]. The use of proton therapy has been widely established both in primary tumors of the nervous system, including extreme dose escalation in glioblastomas, and in re-irradiation settings [14, 15]. Accumulated clinical experience suggests that the application of protons in the pre- and postoperative setting in patients with high-grade gliomas of the brain may minimize the risks of radiation complications and open up new therapeutic opportunities for this disease.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
After enrollment patientswith radiological signs of HGG will be irradiated by pencil beam protons in the following regimens: 3 pts - 4 GyRBE (RBE = 1.1) x 5 Fx; 3 pts - 5 GyRBE x 5 Fx; 3pts - 6 GyRBE x 5 Fx.
Time frame: 12 months
Primary endpoint is to evaluate the safety of preoperative proton stereotactic radiotherapy regimens for HGG based on the incidence and severity of early (up to 3 months) and late (>6 months) radiation-caused complications.
Time frame: 12 months
To evaluate the clinical effects of postoperative proton beam therapy for HGG based on progression-free survival and overall survival rates during the following intervals: 1) between surgery and chemoradiotherapy and 2) after the chemoradiotherapy phase.
Time frame: 12 months
To assess the tolerable dose of preoperative radiotherapy based on the irradiation regimen and tumor volume.
Time frame: 12 months
To evaluate the safety of postoperative chemoradiotherapy, based on the incidence and severity of early (up to 3 months) and late (>6 months) complications.
Time frame: during surgery
To evaluate the specific features of the neurosurgical intervention following preoperative irradiation.
Time frame: 12 months
To evaluate the morphological characteristics and molecular-biological profile of the tumor tissue following the surgical treatment phase. Assess circulating tumor DNA at various stages of treatment.
Contact information is provided by the study sponsor or research team.
National Medical Research Radiological Centre of the Ministry of Health of Russia
Other
Proton PREoperative STereotactic Irradiaiton for High-grade Gliomas (PPrestige): a Single-center Prospective Interventional Pahse 1 Trial
Acronym: PPrestige
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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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