Related Experiment Video
Updated: May 5, 2026

Near Infrared Optical Projection Tomography for Assessments of β-cell Mass Distribution in Diabetes Research
Published on: January 12, 2013
Claudin-4-targeted optical imaging detects pancreatic cancer and its precursor lesions
Albrecht Neesse1, Anke Hahnenkamp, Heidi Griesmann
1Department of Gastroenterology, Endocrinology and Metabolism, Philipps University Marburg, Marburg, Germany.
Objectives:
Novel imaging methods based on specific molecular targets to detect both established neoplasms and their precursor lesions are highly desirable in cancer medicine. Previously, we identified claudin-4, an integral constituent of tight junctions, as highly expressed in various gastrointestinal tumours including pancreatic cancer. Here, we investigate the potential of targeting claudin-4 with a naturally occurring ligand to visualise pancreatic cancer and its precursor lesions in vitro and in vivo by near-infrared imaging approaches.
Design:
A non-toxic C-terminal fragment of the claudin-4 ligand Clostridium perfringens enterotoxin (C-CPE) was labelled with a cyanine dye (Cy5.5). Binding of the optical tracer was analysed on claudin-4 positive and negative cells in vitro, and tumour xenografts in vivo. In addition, two genetically engineered mouse models for pancreatic intraepithelial neoplasia (PanIN) and pancreatic cancer were used for in vivo validation. Optical imaging studies were conducted using 2D planar fluorescence reflectance imaging (FRI) technology and 3D fluorescence-mediated tomography (FMT).
Results:
In vitro, the peptide-dye conjugate showed high binding affinity to claudin-4 positive CAPAN1 cells, while claudin-4 negative HT1080 cells revealed little or no fluorescence. In vivo, claudin-4 positive tumour xenografts, endogenous pancreatic tumours, hepatic metastases, as well as preinvasive PanIN lesions, were visualised by FRI and FMT up to 48 h after injection showing a significantly higher average of fluorochrome concentration as compared with claudin-4 negative xenografts and normal pancreatic tissue.
Conclusions:
C-CPE-Cy5.5 combined with novel optical imaging methods enables non-invasive visualisation of claudin-4 positive murine pancreatic tumours and their precursor lesions, representing a promising modality for early diagnostic imaging.
Insights
A novel imaging tracer targeting claudin-4 successfully visualized pancreatic cancer and precursor lesions in mice. This near-infrared imaging approach shows promise for early cancer detection and diagnosis.
Area of Science:
- Oncology
- Molecular Imaging
- Gastroenterology
Background:
- Novel imaging methods are crucial for detecting neoplasms and precursor lesions in cancer medicine.
- Claudin-4 is highly expressed in gastrointestinal tumors, including pancreatic cancer.
- Targeting claudin-4 offers a potential strategy for visualizing pancreatic cancer.
Purpose of the Study:
- To investigate the potential of targeting claudin-4 with a naturally occurring ligand for near-infrared imaging of pancreatic cancer and precursor lesions.
- To evaluate the efficacy of a claudin-4-targeted optical tracer in vitro and in vivo.
- To assess the utility of this method for early diagnostic imaging.
Main Methods:
- A non-toxic fragment of the claudin-4 ligand, Clostridium perfringens enterotoxin (C-CPE), was labeled with a cyanine dye (Cy5.5).
- Binding affinity was analyzed on claudin-4 positive and negative cells in vitro and in tumor xenografts in vivo.
- Optical imaging was performed using fluorescence reflectance imaging (FRI) and fluorescence-mediated tomography (FMT) in genetically engineered mouse models.
Main Results:
- The C-CPE-Cy5.5 conjugate demonstrated high binding affinity to claudin-4 positive cells in vitro.
- In vivo, claudin-4 positive pancreatic tumors, hepatic metastases, and preinvasive PanIN lesions were visualized up to 48 hours post-injection.
- Significantly higher fluorochrome concentration was observed in claudin-4 positive tumors and lesions compared to negative controls.
Conclusions:
- The C-CPE-Cy5.5 tracer combined with optical imaging enables non-invasive visualization of claudin-4 positive pancreatic tumors and precursor lesions.
- This approach represents a promising modality for early diagnostic imaging of pancreatic cancer.
- Targeting claudin-4 offers a potential strategy for improved detection of pancreatic neoplasms and preneoplastic lesions.
More Related Videos
06:54MR Molecular Imaging of Prostate Cancer with a Small Molecular CLT1 Peptide Targeted Contrast Agent
Published on: September 3, 2013
06:52Stabilized Longitudinal In Vivo Cellular-Level Visualization of the Pancreas in a Murine Model with a Pancreatic Intravital Imaging Window
Published on: May 6, 2021