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Updated: Dec 9, 2025

Identifying PD-1/PD-L1 Inhibitors with Surface Plasmon Resonance Technology
Published on: May 2, 2025
Aptamer targeted therapy potentiates immune checkpoint blockade in triple-negative breast cancer
Simona Camorani1, Margherita Passariello2,3, Lisa Agnello1
1Institute of Experimental Endocrinology and Oncology "Gaetano Salvatore", CNR, Via S. Pansini 5, 80131, Naples, Italy.
Background:
Triple-negative breast cancer (TNBC) is a uniquely aggressive cancer with high rates of relapse due to resistance to chemotherapy. TNBC expresses higher levels of programmed cell death-ligand 1 (PD-L1) compared to other breast cancers, providing the rationale for the recently approved immunotherapy with anti-PD-L1 monoclonal antibodies (mAbs). A huge effort is dedicated to identify actionable biomarkers allowing for combination therapies with immune-checkpoint blockade. Platelet-derived growth factor receptor β (PDGFRβ) is highly expressed in invasive TNBC, both on tumor cells and tumor microenvironment. We recently proved that tumor growth and lung metastases are impaired in mouse models of human TNBC by a high efficacious PDGFRβ aptamer. Hence, we aimed at investigating the effectiveness of a novel combination treatment with the PDGFRβ aptamer and anti-PD-L1 mAbs in TNBC.
Methods:
The targeting ability of the anti-human PDGFRβ aptamer toward the murine receptor was verified by streptavidin-biotin assays and confocal microscopy, and its inhibitory function by transwell migration assays. The anti-proliferative effects of the PDGFRβ aptamer/anti-PD-L1 mAbs combination was assessed in human MDA-MB-231 and murine 4 T1 TNBC cells, both grown as monolayer or co-cultured with lymphocytes. Tumor cell lysis and cytokines secretion by lymphocytes were analyzed by LDH quantification and ELISA, respectively. Orthotopic 4 T1 xenografts in syngeneic mice were used for dissecting the effect of aptamer/mAb combination on tumor growth, metastasis and lymphocytes infiltration. Ex vivo analyses through immunohistochemistry, RT-qPCR and immunoblotting were performed.
Results:
We show that the PDGFRβ aptamer potentiates the anti-proliferative activity of anti-PD-L1 mAbs on both human and murine TNBC cells, according to its human/mouse cross-reactivity. Further, by binding to activated human and mouse lymphocytes, the aptamer enhances the anti-PD-L1 mAb-induced cytotoxicity of lymphocytes against tumor cells. Importantly, the aptamer heightens the antibody efficacy in inhibiting tumor growth and lung metastases in mice. It acts on both tumor cells, inhibiting Akt and ERK1/2 signaling pathways, and immune populations, increasing intratumoral CD8 + T cells and reducing FOXP3 + Treg cells.
Conclusion:
Co-treatment of PDGFRβ aptamer with anti-PD-L1 mAbs is a viable strategy, thus providing for the first time an evidence of the efficacy of PDGFRβ/PD-L1 co-targeting combination therapy in TNBC.
Insights
Combining a PDGFRβ aptamer with anti-PD-L1 immunotherapy shows promise for treating triple-negative breast cancer (TNBC). This novel combination enhances anti-tumor activity and reduces metastasis in TNBC models.
Area of Science:
- Oncology
- Immunotherapy
- Molecular Biology
Background:
- Triple-negative breast cancer (TNBC) is aggressive and chemoresistant, necessitating novel therapeutic strategies.
- TNBC exhibits high programmed cell death-ligand 1 (PD-L1) expression, making it a target for immunotherapy.
- Platelet-derived growth factor receptor β (PDGFRβ) is upregulated in invasive TNBC, presenting a potential therapeutic target.
Purpose of the Study:
- To investigate the efficacy of combining a PDGFRβ aptamer with anti-PD-L1 monoclonal antibodies (mAbs) for TNBC treatment.
- To evaluate the synergistic anti-tumor effects of this combination therapy in preclinical TNBC models.
Main Methods:
- Assessed PDGFRβ aptamer's targeting and inhibitory functions using biochemical assays and microscopy.
- Evaluated the anti-proliferative effects of the combination therapy on human and murine TNBC cells, including co-cultures with lymphocytes.
- Analyzed tumor cell lysis, cytokine secretion, tumor growth, metastasis, and immune cell infiltration in orthotopic xenografts.
- Performed ex vivo analyses including immunohistochemistry, RT-qPCR, and immunoblotting.
Main Results:
- The PDGFRβ aptamer enhanced the anti-proliferative activity of anti-PD-L1 mAbs against TNBC cells.
- The aptamer increased lymphocyte-mediated cytotoxicity against tumor cells and potentiated anti-PD-L1 mAb efficacy.
- Combination therapy significantly inhibited tumor growth and lung metastasis in mice.
- The treatment modulated signaling pathways (Akt, ERK1/2) in tumor cells and increased intratumoral CD8+ T cells while decreasing regulatory T cells (Tregs).
Conclusions:
- Co-treatment with a PDGFRβ aptamer and anti-PD-L1 mAbs is a viable and effective strategy for TNBC.
- This study provides the first evidence for the efficacy of PDGFRβ/PD-L1 co-targeting combination therapy in TNBC.
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