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Updated: Sep 26, 2025

A Flow Cytometry-Based Cell Surface Protein Binding Assay for Assessing Selectivity and Specificity of an Anticancer Aptamer
Published on: September 13, 2022
Cell-directed aptamer therapeutic targeting for cancers including those within the central nervous system
Jun Wei1, Renduo Song2, Aria Sabbagh2
1Department of Immunology, The University of Texas MD Anderson Cancer Center, Houston, TX, USA.
Abstract:
Osteopontin (OPN) is produced by tumor cells as well as by myeloid cells and is enriched in the tumor microenvironment (TME) of many cancers. Given the roles of OPN in tumor progression and immune suppression, we hypothesized that targeting OPN with aptamers that have high affinity and specificity could be a promising therapeutic strategy. Bi-specific aptamers targeting ligands for cellular internalization were conjugated to siRNAs to suppress OPN were created, and therapeutic leads were selected based on target engagement and in vivo activity. Aptamers as carriers for siRNA approaches were created including a cancer targeting nucleolin aptamer Ncl-OPN siRNA and a myeloid targeting CpG oligodeoxynucleotide (ODN)-OPN siRNA conjugate. These aptamers were selected as therapeutic leads based on 70-90% OPN inhibition in cancer (GL261, 344SQ, 4T1B2b) and myeloid (DC2.4) cells relative to scramble controls. In established immune competent 344SQ lung cancer and 4T1B2b breast cancer models, these aptamers, including in combination, demonstrate therapeutic activity by inhibiting tumor growth. The Ncl-OPN siRNA aptamer demonstrated efficacy in an immune competent orthotopic glioma model administered systemically secondary to the ability of the aptamer to access the glioma TME. Therapeutic activity was demonstrated using both aptamers in a breast cancer brain metastasis model. Targeted inhibition of OPN in tumor cells and myeloid cells using bifunctional aptamers that are internalized by specific cell types and suppress OPN expression once internalized may have clinical potential in cancer treatment.
Insights
Targeting osteopontin (OPN) with novel aptamers effectively suppressed tumor growth in preclinical cancer models. These aptamers, delivering siRNA, show promise for cancer therapy by inhibiting OPN in tumor and immune cells within the tumor microenvironment.
Area of Science:
- Biotechnology
- Cancer Research
- Molecular Therapy
Background:
- Osteopontin (OPN) is a protein found in the tumor microenvironment (TME), produced by cancer and myeloid cells.
- OPN contributes to cancer progression and immune suppression, making it a potential therapeutic target.
Purpose of the Study:
- To develop and evaluate bifunctional aptamers conjugated with siRNA for targeted suppression of OPN.
- To assess the therapeutic efficacy of these aptamers in preclinical cancer models.
Main Methods:
- Bi-specific aptamers were engineered to target cellular internalization ligands and deliver OPN-suppressing siRNAs.
- Therapeutic leads were selected based on OPN inhibition in cancer and myeloid cell lines (e.g., GL261, 344SQ, 4T1B2b, DC2.4).
- In vivo efficacy was tested in immune-competent lung, breast, glioma, and brain metastasis models.
Main Results:
- Aptamers achieved 70-90% OPN inhibition in relevant cell lines.
- Significant tumor growth inhibition was observed in lung and breast cancer models.
- Systemic administration of Ncl-OPN siRNA aptamer showed efficacy in an orthotopic glioma model.
- Both aptamers demonstrated therapeutic activity in a breast cancer brain metastasis model.
Conclusions:
- Bifunctional aptamers effectively target and suppress OPN in both tumor and myeloid cells.
- These aptamer-siRNA conjugates demonstrate significant therapeutic potential for various cancer types, including brain tumors and metastases.
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