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Using 22C3 Anti-PD-L1 Antibody Concentrate on Biopsy and Cytology Samples from Non-small Cell Lung Cancer Patients
Published on: September 25, 2018
Combined anti-PDGFRalpha and PDGFRbeta targeting in non-small cell lung cancer
Niels Reinmuth1, Ruediger Liersch, Miriam Raedel
1Department of Medicine/Hematology and Oncology and the IZKF Muenster, University of Muenster, Muenster, Germany. niels.reinmuth@thoraxklinik-heidelberg.de
Abstract:
Activation of the platelet-derived growth factor (PDGF)-receptors is critically involved into various stromal cell functions including recruitment of stromal cells and vascular endothelial growth factor (VEGF) induction in tumor and perivascular cells. To evaluate the effects of combined PDGFRalpha and -beta inhibition in a non-small cell lung cancer model, we stably transfected A549 lung cancer cells with the PDGF-A mutant PDGF-0. PDGF-0 has been generated by substituting amino acids in the binding region of PDGF-A with the corresponding VEGF-A region, leading to a decreased receptor-binding affinity and activation. Compared with control vector transfected cells, transfection with PDGF-0 had no impact on monolayer growth and apoptosis in vitro, but significantly impaired the number of colony formation in soft agar. After subcutaneous injections, all mice developed tumors within 5 days. While control vector transfected A549 cells were characterized by constant tumor growth, PDGF-0 transfected A549 revealed a reduced tumor mass (p < 0.001) with no further growth beyond 14 days (2 months observation time) and complete regressions in 7 of 13 cases. Immunohistochemical analyses revealed that PDGF-0 transfected tumors demonstrated decreased recruitment of periendothelial cells, while the tumor invasion zone was similar to control vector transfectants. Similarly, conditioned medium from PDGF-0 transfected cells induced significantly less migration of smooth muscle cells and fibroblasts in vitro. Interestingly, in PDGF-0 transfectants, neither total vessel count nor VEGF expression were significantly altered. These studies demonstrate that combined inhibition of PDGFRalpha and -beta results in markedly decreased tumor growth in vivo because of impaired recruitment of periendothelial cells.
Insights
Inhibiting platelet-derived growth factor (PDGF) receptors in non-small cell lung cancer cells significantly reduced tumor growth by impairing stromal cell recruitment. This novel approach led to tumor regression in over half of the cases studied.
Area of Science:
- Oncology
- Molecular Biology
- Cancer Research
Background:
- Platelet-derived growth factor (PDGF) receptor activation is crucial for stromal cell functions and tumor growth.
- Targeting PDGF receptors offers a potential strategy for inhibiting cancer progression.
Purpose of the Study:
- To investigate the effects of combined PDGFRalpha and -beta inhibition in a non-small cell lung cancer model.
- To evaluate the therapeutic potential of a novel PDGF-A mutant (PDGF-0) in reducing tumor growth.
Main Methods:
- Stable transfection of A549 lung cancer cells with PDGF-0, a mutant with reduced receptor-binding affinity.
- In vitro assays for monolayer growth, apoptosis, and cell migration.
- In vivo subcutaneous tumor xenograft model in mice.
- Immunohistochemical analysis of tumor tissues.
Main Results:
- PDGF-0 transfection impaired colony formation in soft agar and significantly reduced tumor mass in vivo.
- Tumors from PDGF-0 transfected cells showed no further growth beyond 14 days, with complete regressions in 7 of 13 cases.
- Reduced recruitment of periendothelial cells was observed, while tumor invasion, vessel count, and VEGF expression remained unaltered.
Conclusions:
- Combined inhibition of PDGFRalpha and -beta via PDGF-0 markedly decreases non-small cell lung cancer tumor growth.
- Impaired recruitment of periendothelial stromal cells is a key mechanism underlying the observed anti-tumor effect.
- This strategy holds promise for developing new lung cancer therapies.
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