University Medical Center Groningen
Groningen, 9713GZ, Netherlands
NCT Number: NCT01377324
The dose of fulvestrant to optimally downregulate estrogen receptors (ER) is currently subject of debate. Effects of fulvestrant on the ERs may be evaluable by molecular imaging using positron emission tomography with the ER-specific FES tracer. In this pilot study we will evaluate the effects of the new dose of fulvestrant (500mg i.m.)on the availability of ER binding sites in 15 metastatic breast cancer patients.
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Notify Me18 year and older
All sexes
Interventional
Phase 2
Groningen, 9713GZ, Netherlands
The estrogen receptor (ER) is expressed in approximately 70% of the breast carcinomas. In these patients signaling via the ER induces proliferation and cell survival of malignant cells. Fulvestrant can inhibit this signaling route by blocking the receptor and decreasing ER-expression by increasing its turn-over rate.
The historical standard dose of fulvestrant was 250mg every 28 days i.m.; however studies performing serial biopsies showed that ER-downregulation was suboptimal. Recently the standard dose has been set to 500mg i.m. on day 1; 14; 28 and every 28 days thereafter. Although slightly more effective than the 250mg dose, still questions remain with respect to the required dose to establish maximal downregulation of ER-signaling.
Immunohistochemistry only provides static information, i.e. the level of ER-expression. However, dynamic information evaluating the effects of fulvestrant on occupancy of ERs, may also be valuable.
Whole-body imaging of the availability of ER binding sites using FES-PET may prove valuable to evaluate the effects of fulvestrant on the ER non-invasively in individual patients. This potentially allows adjustment of dosing in individual patients to aid therapy efficacy.
In this pilot-study we will evaluate 15 metastatic breast cancer patients. All patients will undergo FES-PET/CT at baseline, FES-PET after 1 month, and FES-PET/CT after three months. Hormone- and fulvestrant levels will be measured in all patients. Whenever possible, tumor biopsies will be performed to correlate to FES-PET results.
Healthy volunteers accepted: No
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
A FES-PET/(CT) will be performed thrice during protocol execution. Patients will be injected with ~200MBq 18F-FES
Time frame: baseline; 1 month; 3 months
FES-uptake will be calculated for all tumor lesions at baseline, 1 month and 3 months.
Changes between FES-uptake during fulvestrant therapy will be calculated for:
Time frame: baseline, 1 month and 3 months
FES-uptake will be calculated for all tumor lesions at baseline, after 1 month and after 3 months.
Incomplete down-regulation/ occupancy of ERs is defined as 1) an absolute SUV> 1.5, and 2) a relative decrease in SUV of <75% during fulvestrant therapy.
The proportion of patients that match these criteria will be given for:
Time frame: baseline, 1 month and 3 months
Liver metastases detected on PET/CT will be serially quantified at the 3 different time points to evaluate the feasibility to quantify liver lesions on FES-PET/CT
Time frame: baseline, 1 month, 3 months
Patients will be categorized as responders and non-responders by standard follow-up (monthly visits, 3-monthly CT, other techniques when indicated).
The predictive value of FES-PET for response to fulvestrant will be calculated for:
Lesion-based evaluation will be performed for measurable lesions as defined by RECIST criteria, and changes in diameter will be correlated to changes in FES-uptake at:
Time frame: baseline, 1 month and 3 months
Explorative analysis to correlate several factors at different timepoints (baseline, 1 month, 3 months) to FES uptake.
University Medical Center Groningen
Other
In Vivo Imaging of the Effect of Fulvestrant on the Availability of Estrogen Receptor Binding Sites in Metastatic Breast Tumor Lesions Using FES-PET
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