Related Experiment Video
Updated: Dec 31, 2025

Ultrasound-Guided Orthotopic Implantation of Murine Pancreatic Ductal Adenocarcinoma
Published on: November 19, 2019
ImmunoPET Predicts Response to Met-targeted Radioligand Therapy in Models of Pancreatic Cancer Resistant to Met
Freddy E Escorcia1,2,3, Jacob L Houghton4, Dalya Abdel-Atti1
1Department of Radiology, Memorial Sloan Kettering Cancer Center, 1275 York Avenue, New York, New York, 10065, USA.
Abstract:
Background: Pancreatic ductal adenocarcinoma (PDAC) has limited standard of care therapeutic options. While initially received with enthusiasm, results from targeted therapy with small molecule tyrosine kinases inhibitors (TKIs) have been mixed, in part due to poor patient selection and compensatory changes in signaling networks upon blockade of one or more kinase of tumors. Here, we demonstrate that in PDACs otherwise resistant to rational kinase inhibition, Met-directed immuno-positron emission tomography (immunoPET) can identify targets for cell-signaling independent targeted radioligand therapy (RLT). In this study, we use Met-directed immunoPET and RLT in models of human pancreatic cancer that are resistant to Met- and MEK-selective TKIs, despite over-expression of Met and KRAS-pathway activation. Methods: We assessed cell membrane Met levels in human patient samples and pancreatic ductal adenocarcinoma (PDAC) cell lines (BxPC3, Capan2, Suit2, and MIA PaCa-2) using immunofluorescence, flow cytometry and cell-surface biotinylation assays. To determine whether Met expression levels correlate with sensitivity to Met inhibition by tyrosine kinase inhibitors (TKIs), we performed cell viability studies. A Met-directed imaging agent was engineered by labeling Met-specific onartuzumab with zirconium-89 (Zr-89) and its in vivo performance was evaluated in subcutaneous and orthotopic PDAC xenograft models. To assess whether the immunoPET agent would predict for targeted RLT response, onartuzumab was then labeled with lutetium (Lu-177) as the therapeutic radionuclide to generate our [177Lu]Lu-DTPA-onartuzumab RLT agent. [177Lu]Lu-DTPA-onartuzumab was administered at 9.25MBq (250microCi)/20microg in three fractions separated by three days in mice subcutaneously engrafted with BxPC3 (high cell-membrane Met) or MIA PaCa-2 (low cell-membrane Met). Primary endpoints were tumor response and overall survival. Results: Flow cytometry and cell-surface biotinylation studies showed that cell-membrane Met was significantly more abundant in BxPC3, Capan2, and Suit2 when compared with MIA PaCa-2 pancreatic tumor cells. Crizotinib and cabozantinib, TKIs with known activity against Met and other kinases, decreased PDAC cell line viability in vitro. The TKI with the lowest IC50 for Met, capmatinib, had no activity in PDAC lines. No additive effect was detected on cell viability when Met-inhibition was combined with MEK1/2 inhibition. We observed selective tumor uptake of [89Zr]Zr-DFO-onartuzumab in mice subcutaneously and orthotopically engrafted with PDAC lines containing high cell-surface levels of Met (BxPC3, Capan2, Suit2), but not in mice engrafted with low cell-surface levels of Met (MIA PaCa-2). Significant tumor growth delay and overall survival benefit were observed in both BxPC3 and MIA PaCa-2 engrafted animals treated with RLT when compared to controls, however, the benefit was more pronounced and more durable in the BxPC3 engrafted animals treated with [177Lu]Lu-DTPA-onartuzumab RLT. Conclusions: Our findings demonstrate that while over-expression of Met is not predictive of Met-directed TKI response, immunoPET can detect Met over-expression in vivo and predicts for therapeutic response to Met-selective RLT. This phenomenon can be exploited for other Met-overexpressing tumor types specifically, and to any differentially overexpressed surface molecule more broadly.
Insights
Met-directed immuno-positron emission tomography (immunoPET) identifies targets for radioligand therapy (RLT) in pancreatic cancer resistant to tyrosine kinase inhibitors (TKIs). This approach predicts therapeutic response to Met-targeted RLT, offering new treatment avenues.
Area of Science:
- Oncology
- Radiopharmaceutical Therapy
- Molecular Imaging
Background:
- Pancreatic ductal adenocarcinoma (PDAC) has limited therapeutic options, with tyrosine kinase inhibitors (TKIs) showing mixed results due to poor patient selection and resistance.
- Met receptor tyrosine kinase is overexpressed in some PDACs, but Met-directed TKIs have shown limited efficacy, suggesting alternative therapeutic strategies are needed.
Purpose of the Study:
- To evaluate Met-directed immuno-positron emission tomography (immunoPET) for identifying targets for cell-signaling independent targeted radioligand therapy (RLT) in PDAC models.
- To assess the predictive value of Met-directed immunoPET for therapeutic response to Met-selective RLT in TKI-resistant PDAC.
Main Methods:
- Assessed cell membrane Met levels in PDAC cell lines and patient samples using immunofluorescence, flow cytometry, and biotinylation.
- Engineered a Met-directed immunoPET agent ([89Zr]Zr-DFO-onartuzumab) and a therapeutic RLT agent ([177Lu]Lu-DTPA-onartuzumab).
- Evaluated in vivo tumor uptake and therapeutic efficacy in subcutaneous and orthotopic PDAC xenograft models.
Main Results:
- High cell-membrane Met levels were observed in BxPC3, Capan2, and Suit2 PDAC cells, but not in MIA PaCa-2 cells.
- Selective tumor uptake of [89Zr]Zr-DFO-onartuzumab was observed in PDAC models with high Met expression.
- RLT with [177Lu]Lu-DTPA-onartuzumab demonstrated significant tumor growth delay and survival benefit, particularly in models with high Met expression.
Conclusions:
- Met overexpression in PDAC does not predict response to Met-directed TKIs but can be detected by immunoPET.
- Met-directed immunoPET accurately predicts therapeutic response to Met-selective RLT in PDAC.
- This immunoPET-guided RLT strategy holds promise for treating Met-overexpressing tumors, including PDAC.

