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Ex Vivo Tumor Visualization and Resection Margin Assessment Using Topically Applied Fluorescent Imaging Agents

Ex Vivo Tumor Visualization and Resection Margin Assessment Using Topically Applied Fluorescent Imaging Agents

Status
Recruiting
Phases
Unknown
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT06292845
Acronym
SprayDye
Enrollment
200
Registered
2024-03-05
Start date
2024-01-16
Completion date
2027-12-01
Last updated
2026-09-11

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

Conditions

Solid Tumor, Adult

Keywords

Fluorescence imaging

Brief summary

This is a proof-of-principle study, that uses freshly resected human solid tumor specimens to assess the performance of topically applied fluorescent imaging agents for the detection of tumor tissue and close / tumor-positive resection margins ex vivo. Surgery will be performed in conformity with hospital protocol. The study will not interfere with the standard clinical care.

Detailed description

Surgical excision remains an integral part of curative-intent treatment for most solid tumors. The goal of surgical resection is to completely remove all tumor tissue. A tumor-positive or inadequate surgical resection margin, defined as cancer cells at or near (depending on tumor type) the edge of the resection specimen, has major prognostic implications and often necessitates additional treatments. These additional treatments are in turn associated with increased morbidity, complication risks, and healthcare costs. To achieve a complete resection of the tumor, surgeons rely on visual inspection and palpation, sometimes assisted by localization or pathology techniques such as implanted (radioactive/magnetic) seeds and frozen section analysis. However, inadequate resection margin rates in solid tumors remain high, indicating current methods for intraoperative margin assessment are insufficient. They lack real-time feedback on the margin status of large tissue surface areas to guide additional resection. A technique that could meet these requirements is tumor-targeted fluorescence imaging (FI). It combines the administration of a fluorescence imaging agent with the use of fluorescence light. This technique allows for real-time optical feedback by selectively highlighting tumor tissue that expresses certain molecular targets that bind the imaging agent or has certain characteristics that activate it. Presently, the vast majority of fluorescence imaging agents under investigation for intraoperative tumor visualization and resection margin assessment have to be administered intravenously, hours or days prior to surgery. Very recently, new imaging agents have been designed that can be topically administered. Topically applied imaging agents allow for specimen-based (ex vivo) resection-margin assessment using FI, without the necessity to administer the probe to the patient. This approach offers several advantages: (I) ex vivo topical application on the resected specimen eliminates all toxicity risks, as the patient is not exposed to the imaging agent; (II) it is much more cost-effective. First of all, a lower imaging agent dose can be used because there is no systemic volume of distribution, and the probe is not metabolized and excreted. Secondly, toxicity testing and in-patient clinical trials are not required to use the ex vivo topical approach in clinical practice, which greatly reduces implementation time and costs; (III) the ex vivo topical approach is easier to implement in the current surgical workflow, and does not require the patient logistics needed for systemic administration. In this proof-of-principle study, the investigators will investigate if topically applied fluorescent imaging agents can be used to visualize tumor tissue and detect inadequate resection margins ex vivo on freshly resected solid human tumors.

Interventions

DRUGTopical application of a fluorescent imaging agent

The fluorescent imaging agent will be topically applied only onto the resection planes of the freshly resected tumor specimen. During incubation and after each washing steps, visible light and fluorescent overlay images will be acquired using a fluorescence sensitive camera system.

Sponsors

Erasmus Medical Center
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
OTHER
Masking
NONE

Eligibility

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

Inclusion criteria

1. Patients with a biopsy-proven solid tumor, scheduled for surgery at the Erasmus Medical Center. 2. Signed and dated informed consent obtained before any study-related procedure is performed.

Exclusion criteria

1. Terminated surgical procedure. 2. No fresh specimen available. 3. Participation in a clinical trial for which the patient receives another fluorophore perioperatively.

Design outcomes

Primary

MeasureTime frameDescription
Tumor-to-background ratio (TBR) of the fluorescence signal on the resection specimen surface and on 3-5 mm thick tissue slices.through study completion, up to 3 yearsTBR was calculated by drawing a region of interest (ROI) spanning the tumor, and another in adjacent (muscle) tissue using the imaging system's integrated software

Secondary

MeasureTime frameDescription
Imaging agent fluorescence signal intensity on close / tumor-positive resection planes compared with (wide) tumor-negative resection planes, as confirmed by histopathologythrough study completion, up to 3 yearsSignal intensity was determined from a region of interest (ROI) drawn in close / tumor-positive resection planes as well as (wide) tumor-negative resection planes, and comparing them using the imaging system's integrated software.
Difference in tumor-to-background ratio (TBR) between different imaging time windowsthrough study completion, up to 3 yearsTBR was calculated for different imaging time windows, and compared.
The concordance between the presence of tumor cells and fluorescence signalthrough study completion, up to 3 yearsOverlaying fluorescence images with corresponding H\&E slides
Depth of the fluorescence signal on 4-μm tissue slidesthrough study completion, up to 3 yearsPenetration depth of topically applied fluorescent imaging agents was determined from fluorescence images

Countries

Netherlands

Contacts

CONTACTStijn Keereweer, Dr
s.keereweer@erasmusmc.nl0107041357
CONTACTBo Zweedijk, Drs
b.zweedijk@erasmusmc.nl0107042985

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Sep 12, 2026