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Updated: Aug 30, 2025

Fluorescence Molecular Tomography for In Vivo Imaging of Glioblastoma Xenografts
Published on: April 26, 2018
Epidermal growth factor-targeted fluorescence is unaffected by standard neoadjuvant therapies in human sarcomas
Eric R Henderson1,2,3, Paul Werth2, Xiaochun Xu1
1Thayer school of Engineering, Dartmouth College, Hanover, NH.
Abstract:
Curative surgery for other many cancers requires that the tumor be removed with a zone of normal tissue surrounding the tumor with 'negative' margins. Sarcomas, cancers of the bones, muscles, and fat, require WLE for cure. Unfortunately, 'positive' margins occur in 20-25% of sarcoma surgeries, associated with cancer recurrence and reduced survival. Our group successfully tested a small-molecule fluorophore (ABY-029) in sarcomas that targets the epidermal growth factor receptor. We sought to evaluate human sarcoma xenografts for epidermal growth factor receptor expression and binding of ABY-029 with and without exposure to standard presurgical chemotherapy and radiation. We inoculated groups of 24 NSG mice with five cell lines (120 mice total). Eight mice from each cell line received: 1) radiation alone; 2) chemotherapy alone; or 3) chemotherapy and radiation. We administered ABY-029 2-4 hours before surgery. Tumor and biopsy portions of background tissues were removed. All tissues were imaged on a LI-COR Odyssey and processed in pathology. There were no significant reductions in epidermal growth factor receptor expression or in ABY-029-mediated fluorescence in tumors exposed to chemotherapy, radiation, or both. fluorescence-guided surgery demonstrates strong promise to improve curative surgical cancer care, particularly for sarcomas where the positive margin rate is substantial. Fluorophore performance must be evaluated under circumstances that duplicate accurately the biological milieu relevant to a particular cancer. This work shows that human sarcoma xenografts subjected to standard therapies do not demonstrate a change in epidermal growth factor receptor expression or in epidermal growth factor receptor-targeted fluorescence, thereby indicating that epidermal growth factor receptor-targeted fluorescence-guided surgery should be feasible under normal therapeutic conditions in the clinic.
Insights
This study found that a fluorescent agent targeting epidermal growth factor receptor (EGFR) effectively binds to sarcoma tumors even after chemotherapy and radiation. This supports the use of fluorescence-guided surgery for improved cancer treatment outcomes.
Area of Science:
- Oncology
- Surgical Oncology
- Medical Imaging
Background:
- Curative cancer surgery necessitates removing tumors with negative margins, but positive margins occur in 20-25% of sarcoma surgeries, leading to recurrence and reduced survival.
- Epidermal growth factor receptor (EGFR) is a target for cancer therapies, including the small-molecule fluorophore ABY-029.
- Evaluating targeted fluorescent agents under clinically relevant conditions, such as post-neoadjuvant therapy, is crucial for their successful translation.
Purpose of the Study:
- To assess EGFR expression and ABY-029 binding in human sarcoma xenografts after neoadjuvant chemotherapy and/or radiation.
- To determine the feasibility of EGFR-targeted fluorescence-guided surgery in sarcomas treated with standard presurgical therapies.
Main Methods:
- Human sarcoma xenografts were established in NSG mice and treated with radiation, chemotherapy, or both.
- ABY-029 was administered 2-4 hours before surgical resection.
- Tumor and background tissues were analyzed for EGFR expression and ABY-029 fluorescence using LI-COR Odyssey imaging and pathology.
Main Results:
- No significant reduction in EGFR expression was observed in tumors treated with chemotherapy, radiation, or both.
- ABY-029 binding and fluorescence intensity remained consistent across all treatment groups, including controls.
- Pathological analysis confirmed the presence of the fluorophore in tumor tissues post-therapy.
Conclusions:
- EGFR-targeted fluorescence-guided surgery is a promising approach to improve negative margin rates in sarcoma resection.
- The efficacy of ABY-029 is not compromised by standard neoadjuvant chemotherapy or radiation, indicating its potential clinical utility.
- This study supports the feasibility of using EGFR-targeted fluorescence-guided surgery under typical therapeutic conditions for sarcomas.
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