This is a Phase I trial evaluating the safety of personalized radiation therapy based on levels of hypoxia identified on FMISO-PET and MRI. All patients will receive a baseline FMISO positron emission tomography (PET) and MRI to identify levels of hypoxia. Patients with tumor hypoxia will receive a higher dose of radiation therapy. Subjects who do not have hypoxic tumors will be treated with the standard-of-care radiation regimen. After fraction 10 of radiation therapy, an additional MRI will be performed. If this interim MRI demonstrates little or no response (as defined in Section 6), an optional boost radiation dose can be administered. Trial enrollment will be conducted in two parts. In Part 1, eight patients will be enrolled. After all eight patients have completed the 30 day dose-limiting toxicity (DLT) period, enrollment will be placed on hold and safety will be evaluated. During the interim analysis, one additional patient will be allowed to be enrolled in the trial. If the trial meets stopping rules as described in Section 11.3, the trial will be re-evaluated by the Data and Safety Monitoring Committee (DSMC) and the Principal Investigator. However, if the rate of DLTs remains below the unacceptable toxicity rate, enrollment will open to the enrollment of eight more patients.
Study Type
INTERVENTIONAL
Allocation
NA
Purpose
TREATMENT
Masking
NONE
Enrollment
16
Prior to the start of study therapy, eligible subjects will receive a FMISO-PET scan. If there is uptake visualized on the scan, the tumor will be considered as hypoxic. If there is no uptake seen on the FMISO-PET scan, tumors will be labeled not hypoxic. Subjects with tumors identified by imaging as hypoxic will be treated with a higher dose of radiation therapy. Tumors will be defined as being hypoxic if FMISO accumulation occurs as demonstrated by standardized uptake value (SUV) uptake in the tumor.
Prior to the start of study therapy, eligible subjects will receive a FMISO-PET scan. If there is uptake visualized on the scan, the tumor will be considered as hypoxic. If there is no uptake seen on the FMISO-PET scan, tumors will be labeled not hypoxic.
Huntsman Cancer Institute
Salt Lake City, Utah, United States
RECRUITINGrate of grade ≥ 4 esophageal adverse events attributed to radiation therapy that occur within 30 days of finishing radiation therapy
assess the safety and tolerability of using hypoxia PET/CT imaging with Fluorine-18 fluoromisonidazole (FMISO) and MRI measures of radioresistance to personalize radiation therapy by delivering a higher dose of radiation to hypoxic tumors
Time frame: 30 days after last study therapy
rate of grade ≥ 4 esophageal adverse events attributed to radiation therapy that occur within 84 days of finishing radiation therapy
assess the safety and tolerability of using hypoxia PET/CT imaging with Fluorine-18 fluoromisonidazole (FMISO) and MRI measures of radioresistance to personalize radiation therapy by delivering a higher dose of radiation to hypoxic tumors
Time frame: 84 days after last study therapy
frequency of adverse events (AEs) and serious adverse events (SAEs) characterized by type, severity (as defined by the NIH CTCAE, version 5.0), seriousness, duration, and relationship to study treatment
assess the safety and tolerability of using hypoxia PET/CT imaging with Fluorine-18 fluoromisonidazole (FMISO) and MRI measures of radioresistance to personalize radiation therapy by delivering a higher dose of radiation to hypoxic tumors
Time frame: 84 days after last study therapy
Progression-free survival (PFS)
assess the efficacy of hypoxia imaging-guided radiation treatment
Time frame: Time from study therapy initiation to the time documented disease progression (as assessed by RECIST 1.1) or death from any cause for up to 18 months after last dose of study therapy
Pathological complete response (pCR) rate
assess the efficacy of hypoxia imaging-guided radiation treatment
Time frame: Long term follow up to occur for up to 18 months after last dose of study therapy.
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