Germinoma

4

Review clinical trials related to Germinoma. Use filters to narrow results by trial status, phase, treatment, biological sex and sponsor.

Condition / disease
Location
Status: Not yet recruiting

Safety and Efficacy of Vertebral Body-Sparing Craniospinal Irradiation With Proton Therapy in Pediatric Tumors

his is a single-center, prospective observational study in children and adolescents with central nervous system tumors who need whole-brain and whole-spine radiation therapy (craniospinal irradiation, CSI). The study uses proton therapy with a special vertebral body-sparing (VBS) technique to protect the front and center of the vertebrae, which helps preserve bone marrow function and growth. The main goals are to find safe dose limits for the vertebrae and check how often severe side effects occur. The study will also look at bone marrow preservation, spinal deformity, tumor control, survival, chemotherapy completion, neurocognitive function, quality of life, and growth and development for up to 5 years after treatment.

Participants needed: 38
Trial details
Age: 4-18Biological sex: AllType: ObservationalSponsor: Ruijin HospitalUpdated: May 15, 2026
Eligibility criteria

The patient's legal guardian voluntarily signs the written informed consent form... [+6]

Previous receipt of any form of spinal radiotherapy. [+6]

Status: Recruiting

A Study of Lower Radiotherapy Dose to Treat Children With CNS Germinoma

This phase II trial studies how well lower dose radiotherapy after chemotherapy (Carboplatin \& Etoposide) works in treating children with central nervous system (CNS) germinomas. Radiation therapy uses high energy x-rays, particles, or radioactive seeds to kill cancer cells and shrink tumors. Carboplatin is in a class of medications known as platinum-containing compounds. It works in a way similar to the anticancer drug cisplatin, but may be better tolerated than cisplatin. Carboplatin works by killing, stopping or slowing the growth of tumor cells. Etoposide is in a class of medications known as podophyllotoxin derivatives. It blocks a certain enzyme needed for cell division and DNA repair and may kill cancer cells. Researchers want to see if lowering the dose of standard radiotherapy (RT) after chemotherapy can help get rid of CNS germinomas with fewer long-term side effects.

Participants needed: 240
Trial details
Phase: Phase 2Age: 3-29Biological sex: AllType: InterventionalSponsor: Children's Oncology GroupUpdated: May 4, 2026Locations: 109
Eligibility criteria

Patients must be ≥ 3 years and < 30 years at the time of study enrollment [+33]

Endodermal sinus (yolk sac) [+10]

Status: Recruiting

Molecular Epidemiology of Pediatric Germ Cell Tumors

A Non-Therapeutic Study that aims to establish a cohort of GCT survivors to understand short term and long-term adverse effects of treatment and to conduct molecular analyses to improve risk stratification.

Participants needed: 1,151
Trial details
Biological sex: AllType: ObservationalSponsor: Children's Oncology GroupUpdated: Oct 24, 2025Locations: 1
Eligibility criteria

Cases will be eligible for the study if they have a primary diagnosis of GCT inc... [+5]

Participants from AEPI10N1 who did not consent to future contact. Patients who d...

Status: Recruiting

Proton Therapy Research Infrastructure- ProTRAIT- Neuro-oncology

The first proton therapy treatments in the Netherlands have taken place in 2018. Due to the physical properties of protons, proton therapy has tremendous potential to reduce the radiation dose to the healthy, tumour-surrounding tissues. In turn, this leads to less radiation-induced complications, and a decrease in the formation of secondary tumours. The Netherlands has spearheaded the development of the model-based approach (MBA) for the selection of patients for proton therapy when applied to prevent radiation-induced complications. In MBA, a pre-treatment in-silico planning study is done, comparing proton and photon treatment plans in each individual patient, to determine (1) whether there is a significant difference in dose in the relevant organs at risk (ΔDose), and (2) whether this dose difference translates into an expected clinical benefit in terms of NormalTissue Complication Probabilities (ΔNTCP). To translate ΔDose into ΔNTCP, NTCP-models are used, which are prediction models describing the relation between dose parameters and the likelihood of radiation-induced complications. The Dutch Society for Radiotherapy and Oncology (NVRO) setup the selection criteria for proton therapy in 2015, taking into account toxicity and NTCP. However, NTCP-models can be affected by changes in the irradiation technique. Therefore, it is paramount to continuously update and validate these NTCP-models in subsequent patient cohorts treated with new techniques. In ProTRAIT, a Findable, Accessible, Interoperable and Reusable (FAIR)data infrastructure for both clinical and 3D image and 3D dose information has been developed and deployed for proton therapy in the Netherlands. It allows for a prospective, standardized, multi-centric data from all Dutch proton and a representative group of photon therapy patients.

Participants needed: 1,500
Trial details
Age: 18+Biological sex: AllType: ObservationalSponsor: Maastricht Radiation OncologyUpdated: Nov 26, 2024Locations: 3Duration: 5 Years
Eligibility criteria

All brain tumors with a favorable prognosis (median survival > 10 year) [+5]

Not eligible for chemotherapy [+1]