Multimodal interventional molecular imaging of tumor margins and distant metastases by targeting αvβ3 integrin
Anton Bunschoten1, Tessa Buckle, Nils L Visser
1Interventional Molecular Imaging, Department of Radiology, Leiden University Medical Center, 2300 RC Leiden, The Netherlands.
Abstract:
α(v)β(3) integrin is involved in (tumor-induced) angiogenesis and is a promising candidate for the specific visualization of both primary tumors and of their distant metastases. Combination of radioactive and fluorescent imaging labels in a single multimodal, or rather hybrid, RGD-based imaging agent enables integration of pre-, intra-, and postoperative angiogenesis imaging. A hybrid imaging agent targeting the α(v)β(3) integrin--(111)In-MSAP-RGD (MSAP = multifunctional single-attachment-point reagent), which contains a targeting moiety, a pentetic acid (DTPA) chelate, and a cyanine dye--was evaluated for its potential value in combined lesion detection and interventional molecular imaging in a 4T1 mouse breast cancer model. SPECT/CT and fluorescence imaging were used to visualize the tumor in vivo. Tracer distribution was evaluated ex vivo down to the microscopic level. The properties of (111)In-MSAP-RGD were compared with those of (111)In-DTPA-RGD. Biodistribution studies revealed a prolonged retention and increased tumor accumulation of (111)In-MSAP-RGD relative to (111)In-DTPA-RGD. With (111)In-MSAP-RGD, identical features could be visualized preoperatively (SPECT/CT) and intraoperatively (fluorescence imaging). As well as the primary tumor, (111)In-MSAP-RGD also enabled detection and accurate excision of distant metastases in the head and neck region of the mice. Therefore, the hybrid RGD derivative (111)In-MSAP-RGD shows potential in preoperative planning and fluorescence-based surgical intervention.
Insights
A novel hybrid imaging agent, (111)In-MSAP-RGD, effectively visualizes α(v)β(3) integrin in breast cancer. This agent aids in detecting primary tumors and metastases, supporting both preoperative planning and intraoperative surgical guidance.
Area of Science:
- Molecular imaging
- Oncology
- Radiochemistry
Background:
- α(v)β(3) integrin is crucial in tumor angiogenesis and a target for cancer imaging.
- Multimodal imaging agents offer integrated pre-, intra-, and postoperative visualization capabilities.
Purpose of the Study:
- To evaluate the hybrid imaging agent (111)In-MSAP-RGD for combined lesion detection and interventional molecular imaging in a breast cancer model.
- To compare the performance of (111)In-MSAP-RGD with a non-hybrid counterpart, (111)In-DTPA-RGD.
Main Methods:
- Development and characterization of a hybrid RGD-based imaging agent ((111)In-MSAP-RGD) containing radioactive and fluorescent labels.
- In vivo SPECT/CT and fluorescence imaging in a 4T1 mouse breast cancer model.
- Ex vivo biodistribution and microscopic analysis of tracer distribution.
Main Results:
- (111)In-MSAP-RGD demonstrated prolonged retention and increased tumor accumulation compared to (111)In-DTPA-RGD.
- Identical tumor features were visualized preoperatively (SPECT/CT) and intraoperatively (fluorescence imaging).
- The agent successfully detected primary tumors and distant metastases, enabling accurate surgical excision.
Conclusions:
- The hybrid agent (111)In-MSAP-RGD shows significant potential for preoperative planning and fluorescence-guided surgical intervention in cancer.
- This multimodal approach enhances the detection and management of primary and metastatic tumors.
More Related Videos
12:23Multi-modal Imaging of Angiogenesis in a Nude Rat Model of Breast Cancer Bone Metastasis Using Magnetic Resonance Imaging, Volumetric Computed Tomography and Ultrasound
Published on: August 14, 2012
08:26Live Imaging of Drug Responses in the Tumor Microenvironment in Mouse Models of Breast Cancer
Published on: March 24, 2013
