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Updated: Jan 23, 2026

Evaluation of Nanoparticle Uptake in Tumors in Real Time Using Intravital Imaging
Published on: June 21, 2011
Neuropilin-1 drives tumor-specific uptake of chlorotoxin
Sharon McGonigle1,2, Utpal Majumder3, Donna Kolber-Simonds3
1Oncology Business Group, Eisai Inc, 4 Corporate Drive, Andover, MA, 01810, USA. smcgonigle@solidbio.com.
Background:
Chlorotoxin (Cltx) isolated from scorpion venom is an established tumor targeting and antiangiogenic peptide. Radiolabeled Cltx therapeutic (131I-TM601) yielded promising results in human glioma clinical studies, and the imaging agent tozuleristide, is under investigation in CNS cancer studies. Several binding targets have previously been proposed for Cltx but none effectively explain its pleiotropic effects; its true target remains ambiguous and is the focus of this study.
Methods:
A peptide-drug conjugate (ER-472) composed of Cltx linked to cryptophycin as warhead was developed as a tool to probe the molecular target and mechanism of action of Cltx, using multiple xenograft models.
Results:
Neuropilin-1 (NRP1), an endocytic receptor on tumor and endothelial cells, was identified as a novel Cltx target, and NRP1 binding by Cltx increased drug uptake into tumor. Metabolism of Cltx to peptide bearing free C-terminal arginine, a prerequisite for NRP1 binding, took place in the tumor microenvironment, while native scorpion Cltx with amidated C-terminal arginine did not bind NRP1, and instead acts as a cryptic peptide. Antitumor activity of ER-472 in xenografts correlated to tumor NRP1 expression. Potency was significantly reduced by treatment with NRP1 blocking antibodies or knockout in tumor cells, confirming a role for NRP1-binding in ER-472 activity. Higher cryptophycin metabolite levels were measured in NRP1-expressing tumors, evidence of NRP1-mediated enhanced drug uptake and presumably responsible for the superior antitumor efficacy.
Conclusions:
NRP1 was identified as a novel Cltx target which enhances tumor drug uptake. This finding should facilitate tumor selection for chlorotoxin-based therapeutics and diagnostics.
Insights
Chlorotoxin (Cltx) targets Neuropilin-1 (NRP1) to enhance tumor drug delivery. This discovery aids in selecting patients for Cltx-based cancer therapies and diagnostics.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Chlorotoxin (Cltx), a scorpion venom peptide, exhibits tumor-targeting and antiangiogenic properties.
- Previous therapeutic and diagnostic applications of Cltx (e.g., 131I-TM601, tozuleristide) show promise in CNS cancers.
- The precise molecular target of Cltx, responsible for its diverse effects, remains elusive.
Purpose of the Study:
- To identify the molecular target of Chlorotoxin (Cltx) and elucidate its mechanism of action.
- To investigate the role of this target in the antitumor activity of Cltx-based drug conjugates.
Main Methods:
- Development of a peptide-drug conjugate (ER-472) linking Cltx to cryptophycin.
- Utilizing multiple xenograft models to study the efficacy and mechanism of ER-472.
- Assessing Cltx binding and drug uptake in relation to Neuropilin-1 (NRP1) expression.
Main Results:
- Neuropilin-1 (NRP1) was identified as a novel binding target for Cltx.
- Cltx metabolism in the tumor microenvironment is crucial for NRP1 binding and subsequent drug uptake.
- ER-472's antitumor efficacy in xenografts correlated directly with tumor NRP1 expression and was diminished by NRP1 blockade.
Conclusions:
- Neuropilin-1 (NRP1) is a key target for Chlorotoxin (Cltx), mediating enhanced tumor drug uptake.
- This finding provides a basis for selecting tumors likely to respond to Cltx-based therapeutics and diagnostics.
- Understanding the Cltx-NRP1 interaction opens avenues for improved cancer treatment strategies.
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