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Hypofractionated IMRT With Concurrent Chemotherapy in Muscle-invasive Bladder Cancer (HIRACUM)

Hypofractionated Intensity-modulated Radiation Therapy With Concurrent Chemotherapy in Musc Le-invasive Bladder Cancer:

Status
Recruiting
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05453682
Acronym
HIRACOM
Enrollment
53
Registered
2022-07-12
Start date
2021-05-14
Completion date
2029-12-31
Last updated
2024-12-02

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Bladder Cancer

Keywords

bladder cancer, hypofractionated radiotherapy

Brief summary

The purpose of this study is to investigate the side effects, quality of life, and treatment effects of concurrent chemo-hypofractionated intensity-modulated radiation therapy in bladder cancer. Twenty fractionation within 4 weeks are performed using hypofractionated intensity-modulated radiation therapy. As for the radiation dose, 2.8-3.2 Gy at a time, total dose 56-64 Gy, to the high-risk target volume, and 2-2.2 Gy at a time, and 40-44 Gy, respectively, to the low-risk target volume. It aims to include more than 97% of the total dose to cover the entire PTV, and the minimum dose in the PTV is not lower than 95% of the prescribed dose, and the maximum dose does not exceed 107% of the prescribed dose. Chemotherapy before and after radiotherapy can be performed depending on the institutional policy. Among radiotherapy, chemotherapy is performed with platinum-based agents (cisplatin, carboplatin, etc.), and is administered once a week for a total of 3 or more.

Detailed description

For bladder cancer, conventional concurrent chemoradiotherapy is irradiated with a daily radiation dose of 1.8-2.0 Gy each, a total of 64 Gy or more, and the radiation treatment period takes more than 6 weeks in bladder preserving protocol. Concurrent chemoradiotherapy has the advantage of bladder preservation, but gastrointestinal, genitourinary, and hematologic side effects occur in about 5%. Hypofractionated radiotherapy has the advantage of increasing the radiation-biological effect on tumors by reducing the number of treatments instead of increasing the daily dose, and shortening the overall treatment time. On the other hand, hypofractionated radiotherapy can also increase the risk of side effects related to treatment because the radiologic effects on normal tissues also increase. However, the biological effect of radiation on normal tissues can be reduced by applying intensity-modulated radiation therapy in hypofractional radiation therapy to reduce radiation exposure to normal tissues. Clinical studies of concurrent chemotherapy with hypofractionation radiation therapy are still in its insignificant stage. The purpose of this study is to investigate the side effects, quality of life, and treatment effects of concurrent chemo-hypofractionated intensity-modulated radiation therapy in bladder cancer. The 2-year bladder conserving disease-free survival rate after the existing concurrent chemo-radiation therapy is known to be about 55%, and when concurrent chemo-hyofractionated intensity-modulated radiation therapy is performed in invasive bladder cancer, the 2-year bladder conservation disease-free survival rate is expected about 70%. The number of patients required to verify this was 80% power, a significance level of alpha = 0.1, recruitment of patients for 3 years, and taking into account the follow-up observation for 2 years after recruitment, and setting the dropout rate of 15%, a total of 53 patients was necessary. Twenty fractionation within 4 weeks are performed using hypofractionated intensity-modulated radiation therapy. As for the radiation dose, 2.8-3.2 Gy at a time, total dose 56-64 Gy, to the high-risk target volume, and 2-2.2 Gy at a time, and 40-44 Gy, respectively, to the low-risk target volume. It aims to include more than 97% of the total dose to cover the entire PTV, and the minimum dose in the PTV is not lower than 95% of the prescribed dose, and the maximum dose does not exceed 107% of the prescribed dose. Chemotherapy before and after radiotherapy can be performed depending on the institutional policy. Among radiotherapy, chemotherapy is performed with platinum-based agents (cisplatin, carboplatin, etc.), and is administered once a week for a total of 3 or more.

Interventions

RADIATIONhypo-IMRT

Twenty fractionation within 4 weeks are performed using hypofractionated intensity-modulated radiation therapy. As for the radiation dose, 2.8-3.2 Gy at a time, total dose 56-64 Gy, to the high-risk target volume, and 2-2.2 Gy at a time, and 40-44 Gy, respectively, to the low-risk target volume.

Sponsors

Samsung Medical Center
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
TREATMENT
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
20 Years to No maximum
Healthy volunteers
No

Inclusion criteria

1. Patients diagnosed with bladder cancer histologically 2. Patients with muscle layer involvement in transurethral resection (pT2 or higher) 3. Patients without pelvic lymph node metastasis by computed tomography (CT) or magnetic resonance images (MRI) of the pelvis. 4. Patients who want bladder conservation treatment 5. Patients over 20 years old 6. Patients with Zubrod (ECOG) performance status 0-1 within 1 week prior to participation in the study 7. Patients who have signed the consent form with sufficient information by the patient or guardian 8. Patients with hematologic findings capable of concurrent chemoradiotherapy

Exclusion criteria

1. Patients with previous pelvic radiotherapy history 2. Pregnant or lactating patients 3. Patients with distant metastasis 4. Patients judged to be difficult to conserve bladder due to extensive non-invasive/invasive bladder cancer 5. Patients who have not been disease-free for more than 5 years after diagnosis of cancer (excluding thyroid cancer, non-melanoma skin cancer, T1a prostate cancer, and intraepithelial cancer of the cervix) 6. Patients with untreated severe acute disease 7. Patients predicted to have a high probability of radiation complications due to connective tissue disease (lupus, scleroderma, etc.)

Design outcomes

Primary

MeasureTime frameDescription
bladder preservation disease-free survival rate2 years after participation of all subjectsTwo-year bladder preservation disease-free survival rate when concurrent chemo-hypofractionated intensity-modulated radiation therapy

Secondary

MeasureTime frameDescription
Number of participants with treatment-related adverse events as assessed by Number of participants with treatment-related adverse events as assessed CTCAE v5.0 radiation therapy3 months after participationacute toxicity
Number of participants with treatment-related adverse events as assessed by CTCAE v5.0radiation therapy5 years after participationlate toxicity
EORTC QOL-C30 measurement5 years after participationQoL
2 year disease-free survival when concurrent chemo-hypofractionated intensity-modulated radiation therapy2 years after participation of all subjectsdisease-free survival
overall survival when concurrent chemo-hypofractionated intensity-modulated radiation therapy5 years after participation of all subjectsoverall survival

Countries

South Korea

Contacts

Primary ContactWon Park, Dr
wonro.park@samsung.com82-10-9933-2616

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026