Intensity Modulated PrOton Therapy in Pediatric BRain Tumors (IMPORT): A Phase 3 Randomized Controlled Trial
试验速览
- 阶段
- 不适用
- 状态
- 招募中
- 入组人数
- 94
- 试验地点
- 1
- 主要终点
- Survival Outcome
研究概览
简要总结
Children diagnosed with benign or low-grade brain tumors often require radiation therapy to control their disease. While radiation can be effective, traditional techniques using X-rays (photon-based radiotherapy) expose healthy brain tissue to radiation, potentially leading to long-term side effects like memory loss, learning difficulties, hormone imbalances, hearing problems, and a higher risk of secondary cancers. This study, called the IMPORT Trial, aims to compare two types of radiation therapy-Intensity-Modulated Proton Therapy (IMPT) and Intensity-Modulated Radiation Therapy (IMRT)-to determine which is safer and more effective for children. IMPT, a newer technique, uses protons instead of X-rays to deliver radiation, reducing exposure to healthy brain tissue. Researchers believe this could help minimize long-term damage while maintaining effective tumor control.
What is the goal of the study?
The primary goal is to see if IMPT leads to better survival with fewer side effects compared to IMRT. The study will track how well children function over five years, looking at:
- Cognitive abilities (memory, attention, learning)
- Hormonal balance (pituitary gland function)
- Hearing ability
- Overall survival without significant decline in quality of life
How will the study work?
- Who can join? Children aged 6 to 16 years diagnosed with certain types of benign or low-grade brain tumors.
- How are patients treated? Patients will be randomly assigned to receive either IMRT or IMPT.
- What is analysed? Doctors will track survival, tumor control, cognitive function, endocrine health, and quality of life over time.
- How long will it take? The study will last 10 years (5 years to enroll patients, 5 years to follow up).
Proton therapy is more expensive and not widely available, so strong scientific evidence is needed to justify its use in routine treatment. If IMPT significantly improves quality of life and survival, it could become the preferred treatment, shaping future policies and making proton therapy more accessible for children who need it.
详细描述
Benign and low-grade primary brain tumors constitute a substantial proportion of pediatric central nervous system tumors and are associated with excellent long-term survival when managed with multimodality therapy. Despite favorable tumor control rates, survivors are at significant risk of treatment-related late effects, particularly following radiation therapy, which can adversely impact neurocognitive function, endocrine health, auditory function, and overall quality of life. Given the prolonged life expectancy of this population, minimizing radiation-induced toxicity while maintaining effective disease control is a major therapeutic priority.
Radiation therapy remains an essential curative modality for children with unresectable, residual, progressive, or recurrent benign and low-grade brain tumors. Advances in high-precision photon-based techniques such as intensity-modulated radiation therapy (IMRT) have improved dose conformality; however, photon therapy continues to expose large volumes of normal brain tissue to low and intermediate radiation doses. This exposure may lead to white matter injury, neuroinflammation, microvascular damage, and subsequent neurocognitive, endocrine, and auditory dysfunction, particularly in younger patients with developing brains.
Proton beam therapy offers a potential dosimetric advantage over photon therapy due to its physical depth-dose characteristics, allowing reduced integral dose to surrounding normal tissues. Intensity-modulated proton therapy (IMPT), delivered using pencil beam scanning, enables highly conformal dose distributions with improved sparing of organs at risk and may allow for reduction in treatment margins through enhanced image guidance and dose painting capabilities. These properties suggest a potential for meaningful reduction in late radiation-related toxicity in pediatric patients, while preserving tumor control.
While dosimetric and retrospective clinical data suggest advantages of proton therapy in reducing radiation exposure to critical neural structures, robust prospective randomized evidence demonstrating clinically meaningful benefits remains limited. Furthermore, the higher cost and limited availability of proton therapy necessitate careful evaluation of its value relative to advanced photon techniques, particularly in resource-constrained healthcare systems. Generating high-level evidence to guide patient selection and policy decisions is therefore essential.
The IMPORT trial is a prospective, randomized, open-label, phase III superiority study designed to compare IMPT with IMRT in children with benign and low-grade primary brain tumors treated with curative intent radiotherapy. The trial focuses on outcomes that are particularly relevant to long-term pediatric survivorship, including neurocognitive function, endocrine and auditory toxicity, and quality of life, while ensuring comparable tumor control.
研究设计
- 研究类型
- Interventional
- 分配方式
- Randomized
- 干预模型
- Parallel
- 主要目的
- Treatment
- 盲法
- None
入排标准
- 年龄范围
- 6 Years 至 16 Years(Child)
- 性别
- All
- 接受健康志愿者
- 否
入选标准
- •Age at irradiation: 6 to 16 years
- •Karnofsky/ Lansky Play Performance Status ≥ 60
- •Diagnosis (histopathological/ radiological) of primary brain tumor with an expected survival of >5 years (e.g., circumscribed gliomas, low grade gliomas, low-grade glial/ glioneuronal tumors, meningioma, pituitary tumors, schwannoma, craniopharyngioma, ependymoma)
- •Planned for focal cranial radiotherapy
- •Informed consent taken
排除标准
- •Re-irradiation
- •Palliative radiotherapy
- •Multifocal or multicentric disease
- •Planned for whole brain irradiation or craniospinal irradiation
- •Planned for hypo-fractionated or stereotactic radiotherapy
研究组 & 干预措施
Control Arm
Patients in the standard arm will undergo focal cranial radiotherapy using photons (X-rays) with Image Guided Intensity Modulated Radiotherapy(IG-IMRT) using Volumetric Modulated Arc Therapy(VMAT).
干预措施: Photon-based intensity-modulated radiation therapy (IMRT). (Radiation)
Experimental Arm
The patients in the experimental arm will undergo focal radiotherapy to an equivalent dose using protons with pencil beam scanning- IMPT or volumetric modulated proton arc therapy.
干预措施: Intensity-modulated proton therapy (IMPT) (Radiation)
结局指标
主要结局
Survival Outcome
时间窗: 5 years
Qualified Overall Survival (qOS) is a composite endpoint defined as survival without functional, cognitive, or quality-of-life deterioration, irrespective of whether the cause is disease progression or treatment toxicity. The study hypothesizes that IMPT is superior to IMRT for 5-year qOS. qOS is measured from randomization to the earliest of: 1. death from any cause; 2. radiological progression confirmed on multiparametric MRI with two scans ≥12 weeks apart or deemed progressive by multidisciplinary consensus; 3. neurocognitive decline \>10 IQ points on Wechsler scales; 4. clinically significant hypopituitarism requiring hormonal supplementation (CTCAE v5 Grade ≥2); 5. Grade ≥2 ototoxicity; or 6. symptomatic radiation necrosis requiring corticosteroids \>4 weeks or anti-angiogenic therapy (e.g., bevacizumab).
次要结局
- Overall Survival (OS)(At 5 years)
- Progression-free Survival (PFS)(at 5 years)
- Response Rate (RR)(Radiotherapy conclusion- within 1 week, 3-months post RT, 1-year post RT, annually till 5-years)
- Sub-domain of qOS(Radiotherapy conclusion- within 1 week, 3-months post RT, 1-year post RT, annually till 5-years)
- Quality of Life indices(Pre-Radiotherapy (Baseline), Radiotherapy conclusion- within 1 week, 3-months post RT, 1-year post RT, annually till 5-years)
- Cost-effectiveness based on EQ-5D-5L derived utilities(Pre-Radiotherapy (Baseline), Radiotherapy conclusion- within 1 week, 3-months post RT, 1-year post RT, annually till 5-years)
