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Updated: May 23, 2026

Isolation of Primary Cancer-Associated Fibroblasts from a Syngeneic Murine Model of Breast Cancer for the Study of Targeted Nanoparticles
Published on: May 14, 2021
Landscape phages and their fusion proteins targeted to breast cancer cells
Olusegun A Fagbohun1, Deepa Bedi, Natalia I Grabchenko
1Department of Pathobiology, College of Veterinary Medicine, Auburn University, Auburn, AL 36849, USA.
Abstract:
Breast cancer is a leading cause of death among women in the USA. The efficacy of existing anticancer therapeutics can be improved by targeting them through conjugation with ligands binding to cellular receptors. Recently, we developed a novel drug targeting strategy based on the use of pre-selected cancer-specific 'fusion pVIII proteins' (fpVIII), as targeting ligands. To study the efficiency of this approach in animal models, we developed a panel of breast cancer cell-binding phages as a source of targeted fpVIIIs. Two landscape phage peptide libraries (8-mer f8/8 and 9-mer f8/9) were screened to isolate 132 phage variants that recognize breast carcinoma cells MCF-7 and ZR-75-1 and internalize into the cells. When tested for their interaction with the breast cancer cells in comparison with liver cancer cells HepG2, human mammary cells MCF-10A cells and serum, 16 of the phage probes selectively interacted with the breast cancer cells whereas 32 bound both breast and liver cancer cells. The most prominent cancer-specific phage DMPGTVLP, demonstrating sub-nanomolar Kd in interaction with target cells, was used for affinity chromatography of cellular membrane molecules to reveal its potential binding receptor. The isolated protein was identified by direct sequencing as cellular surface nucleolin. This conclusion was confirmed by inhibition of the phage-cell interaction with nucleolin antibodies. Other prominent phage binders VPTDTDYS, VEEGGYIAA, and DWRGDSMDS demonstrate consensus motifs common to previously identified cancer-specific peptides. Isolated phage proteins exhibit inherent binding specificity towards cancer cells, demonstrating the functional activity of the selected fused peptides. The selected phages, their peptide inserts and intact fusion proteins can serve as promising ligands for the development of targeted nanomedicines and their study in model mice with xenograft of human cells MCF-7 and ZR-75-1.
Insights
Researchers developed novel cancer-targeting fusion proteins (fpVIII) using phage display. These ligands bind specifically to breast cancer cells, identifying nucleolin as a potential receptor for targeted nanomedicine development.
Area of Science:
- Biotechnology
- Oncology
- Molecular Biology
Background:
- Breast cancer remains a significant cause of mortality in women.
- Targeted drug delivery enhances anticancer therapeutic efficacy.
- Fusion proteins (fpVIII) offer a novel strategy for ligand-based targeting.
Purpose of the Study:
- To develop and validate cancer-specific phage-displayed fusion proteins (fpVIII) for targeted drug delivery.
- To identify the cellular receptors for these novel fpVIII ligands.
- To assess the potential of these fpVIII as components of targeted nanomedicines.
Main Methods:
- Screening of phage peptide libraries (8-mer and 9-mer) against breast cancer cell lines (MCF-7, ZR-75-1).
- Characterization of phage-cell interactions, including specificity testing against non-cancerous cells (HepG2, MCF-10A) and serum.
- Affinity chromatography and protein sequencing to identify the binding receptor for a high-affinity phage (DMPGTVLP).
- Validation of receptor identification using nucleolin antibodies.
Main Results:
- 132 phage variants recognizing and internalizing into breast cancer cells were isolated.
- 16 phage probes demonstrated selective binding to breast cancer cells.
- The phage DMPGTVLP exhibited sub-nanomolar binding affinity and specifically targeted nucleolin.
- Nucleolin was confirmed as the binding receptor via antibody inhibition assays.
- Other identified phages showed consensus motifs with known cancer-specific peptides.
Conclusions:
- Phage display is effective for generating cancer-specific fusion proteins (fpVIII).
- Nucleolin is a validated target receptor for breast cancer-specific phages.
- Selected phages and their corresponding fusion proteins are promising ligands for targeted nanomedicine development.
- These ligands show potential for preclinical studies in animal models of breast cancer.
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