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Updated: Aug 8, 2025

In Vivo Immunofluorescence Localization for Assessment of Therapeutic and Diagnostic Antibody Biodistribution in Cancer Research
Published on: September 16, 2019
From netrin-1-targeted SPECT/CT to internal radiotherapy for management of advanced solid tumors
David Kryza1,2, Jennifer Wischhusen3, Mathieu Richaud3,4
1Imthernat, LAGEPP, CNRS UMR 5007, Université de Lyon, Hospices Civils de Lyon, Lyon, France.
Abstract:
Targeted radionuclide therapy is a revolutionary tool for the treatment of highly spread metastatic cancers. Most current approaches rely on the use of vectors to deliver radionuclides to tumor cells, targeting membrane-bound cancer-specific moieties. Here, we report the embryonic navigation cue netrin-1 as an unanticipated target for vectorized radiotherapy. While netrin-1, known to be re-expressed in tumoral cells to promote cancer progression, is usually characterized as a diffusible ligand, we demonstrate here that netrin-1 is actually poorly diffusible and bound to the extracellular matrix. A therapeutic anti-netrin-1 monoclonal antibody (NP137) has been preclinically developed and was tested in various clinical trials showing an excellent safety profile. In order to provide a companion test detecting netrin-1 in solid tumors and allowing the selection of therapy-eligible patients, we used the clinical-grade NP137 agent and developed an indium-111-NODAGA-NP137 single photon emission computed tomography (SPECT) contrast agent. NP137-111 In provided specific detection of netrin-1-positive tumors with an excellent signal-to-noise ratio using SPECT/CT imaging in different mouse models. The high specificity and strong affinity of NP137 paved the way for the generation of lutetium-177-DOTA-NP137, a novel vectorized radiotherapy, which specifically accumulated in netrin-1-positive tumors. We demonstrate here, using tumor cell-engrafted mouse models and a genetically engineered mouse model, that a single systemic injection of NP137-177 Lu provides important antitumor effects and prolonged mouse survival. Together, these data support the view that NP137-111 In and NP137-177 Lu may represent original and unexplored imaging and therapeutic tools against advanced solid cancers.
Insights
Researchers identified netrin-1 as a novel target for cancer therapy. An antibody-based imaging agent (NP137-In-111) and radionuclide therapy (NP137-Lu-177) showed promise for treating advanced solid tumors.
Area of Science:
- Oncology
- Radiochemistry
- Molecular Imaging
Background:
- Targeted radionuclide therapy offers a novel approach for metastatic cancers.
- Current methods often target cell surface proteins.
- Netrin-1, a re-expressed protein in tumors, is explored as a new therapeutic target.
Purpose of the Study:
- To investigate netrin-1 as a target for vectorized radiotherapy.
- To develop diagnostic and therapeutic agents targeting netrin-1.
- To evaluate the efficacy of these agents in preclinical cancer models.
Main Methods:
- Developed an indium-111 labeled antibody (NP137-In-111) for SPECT/CT imaging.
- Generated a lutetium-177 labeled antibody (NP137-Lu-177) for targeted radionuclide therapy.
- Tested imaging and therapeutic agents in mouse models of solid tumors.
Main Results:
- NP137-In-111 specifically detected netrin-1-positive tumors with high signal-to-noise ratio.
- NP137-Lu-177 demonstrated specific accumulation in netrin-1-positive tumors.
- Single injection of NP137-Lu-177 resulted in significant antitumor effects and prolonged survival.
Conclusions:
- Netrin-1 is a viable target for vectorized radiotherapy.
- NP137-In-111 and NP137-Lu-177 represent promising new tools for imaging and treating advanced solid cancers.
- This approach offers a novel strategy for patient selection and treatment in oncology.

