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Targeting oncofetal fibronectin and neuropilin-1 in solid tumors with PL2 peptide
Prakash Lingasamy1,2, Allan Tobi1, Kaarel Kurm1
1Laboratory of Precision and Nanomedicine, Institute of Biomedicine and Translational Medicine, University of Tartu, Tartu, 50411, Estonia.
Abstract:
To improve the precision and selectivity of anticancer therapies, affinity ligands targeting molecules of the malignancy-associated vascular signature are used. One such target is Fibronectin Extra Domain-B (Fn-EDB), an oncofetal splice variant of a major extracellular matrix protein (Fn), which is upregulated in many solid tumors as part of the angiogenic response. In this study, we conducted cell-free biopanning on recombinant Fn-EDB to identify a short peptide designated as PL2 (amino acid sequence: TSKQNSR), which specifically interacts with Fn-EDB. Notably, the C-terminal arginine of PL2 enables its interaction with neuropilin-1 (NRP-1), a receptor known to facilitate cell and tissue penetration. When administered systemically, PL2-displaying recombinant bacteriophages and iron oxide nanoworms (NWs) functionalized with PL2 peptide exhibited homing to glioblastoma and prostate tumor xenografts, followed by their extravasation and penetration into tumor parenchyma. This preclinical study demonstrates that PL2-functionalized NWs penetrate ex vivo explants of clinical ovarian carcinoma, highlighting their proof-of-concept potential as tumor-homing and tissue-penetrating agents for precision oncology, pending further efficacy and safety validation. These findings underscore the potential of the PL2 peptide as a promising agent for anticancer drug delivery and molecular imaging applications.
Insights
Researchers identified a peptide, PL2, that targets cancer-associated Fibronectin Extra Domain-B (Fn-EDB). This peptide, when attached to nanoparticles, effectively targets and penetrates tumors, showing promise for precision oncology and molecular imaging.
Area of Science:
- Biochemistry
- Oncology
- Nanotechnology
Background:
- Targeting malignancy-associated vascular signatures enhances anticancer therapy precision.
- Fibronectin Extra Domain-B (Fn-EDB) is an oncofetal protein upregulated in tumors, making it a key target for cancer therapies.
Purpose of the Study:
- To identify a specific ligand for Fn-EDB.
- To evaluate the tumor-homing and tissue-penetrating capabilities of Fn-EDB-targeting agents.
Main Methods:
- Cell-free biopanning was used to discover the PL2 peptide (TSKQNSR) that binds to Fn-EDB.
- PL2-functionalized bacteriophages and iron oxide nanoworms (NWs) were developed and tested in preclinical models.
Main Results:
- The PL2 peptide specifically interacts with Fn-EDB and utilizes neuropilin-1 (NRP-1) for tissue penetration.
- PL2-displaying nanocarriers demonstrated homing to glioblastoma and prostate tumor xenografts.
- PL2-functionalized NWs successfully penetrated ex vivo ovarian carcinoma explants.
Conclusions:
- The PL2 peptide is a potent tumor-homing and tissue-penetrating agent.
- PL2-functionalized nanocarriers show significant potential for precision oncology applications, including drug delivery and molecular imaging.
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