To improve detection of esophageal (pre)malignant lesions during surveillance endoscopy of patients at risk of developing malignancies, for example in Barrett's Esophagus (BE), there is a need for better endoscopic visualization and the ability for targeted biopsies. Optical molecular imaging of neoplasia associated biomarkers could form a promising technique to accommodate this need. It is known that the biomarker Vascular Endothelial Growth Factor (VEGF) is overexpressed in dysplastic and neoplastic areas in BE segments versus normal tissue and has proven to be a valid target for molecular imaging. The University Medical Center Groningen (UMCG) developed a fluorescent tracer by labeling the VEGF-targeting humanized monoclonal antibody bevacizumab, currently used in anti-cancer therapy, with the fluorescent dye IRDye800CW. The phase I study, named VICE, completed within the UMCG, showed that synchronal use of VEGFA-guided near-infrared fluorescence molecular endoscopy (NIR-FME) and high-definition white light endoscopy (HD-WLE), following topical or systemic tracer administration, could be practiced to recognize dysplastic and early EAC lesions in patients with BE. Furthermore, early lesion detection was improved by \~33% using the topically applied tracer approach compared with HD-WL/NBI endoscopy. With this phase 2 intervention study the investigators aim to statistically confirm previous pilot (Phase I) clinical data showing that the combination of HD-WLE and FME using labelled bevacizumab improves early EC detection over the current clinical standard.
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Study Type
INTERVENTIONAL
Allocation
NA
Purpose
DIAGNOSTIC
Masking
NONE
Enrollment
60
Topical administration of Bevacizumab-IRDye800CW during the endoscopic procedure.
Device: Molecular Fluorescence Endoscopy platform A flexible fluorescence fiber-bundle is attached to a fluorescence camera platform to enable the detection of fluorescence signals. The fluorescence fiber-probe is inserted through the standard working channel of the standard clinical endoscope.
University Medical Center Groningen
Groningen, Netherlands
RECRUITINGFluorescence signal in patients with Barrett's Esophagus
Evaluating the performance of FME with topical administration of Bevacizumab-800CW for detection of neoplasia in BE patients compared to HD-WLE to make an estimation of the diagnostic accuracy in terms of sensitivity and specificity in order to make a power size calculation for the Phase III trial.
Time frame: During the endoscopic procedure
Ex vivo fluorescence singals
Correlate and validate fluorescence signals detected in vivo with ex vivo histopathology grade of dysplasia and VEGF expression
Time frame: 2 years
Number of participants with adverse events (AE), serious adverse events (SAE) and suspected unexpected serious adverse reactions (SUSAR).
Data collection as a measure of safety and tolerability regarding administration of Bevacizumab-IRDye800CW
Time frame: Up to 1 week after administration of tracer
Interrogate potential new EC biomarkers
We will perform ex-vivo binding experiments with tracers against GREM1, -SULF1 and -PRKCi on the fresh EMR if available and compare them against the in-vivo WLE/NIR-FME findings. We will analyze the sensitivity and specificity of the novel markers alone or in combination. The targeting moieties will be coupled with different fluorophores allowing for multi-parametric analysis.
Time frame: 2 years
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