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Published on: November 18, 2016
Platelet-derived growth factors and receptors in Canine Lymphoma
A Aricò1, E Guadagnin1, S Ferraresso1
1Department of Comparative Biomedicine and Food Science, University of Padova, Viale dell'Università 16, 35020 Agripolis, Legnaro, PD, Italy.
Abstract:
Platelet-derived growth factors (PDGFs) belong to a family of polypeptide growth factors that signal through cell surface tyrosine kinase receptors to stimulate growth, proliferation and differentiation. Platelet-derived growth factor receptors (PDGFRs) are also considered important targets for specific kinase inhibitors in the treatment of several human tumours. The aim of this study was to investigate the role of PDGF-A, PDGF-B, PDGFR-α and PDGFR-β in canine lymphoma by determining gene and protein expression in lymph nodes of dogs with diffuse large B-cell lymphoma (DLBCL), peripheral T-cell lymphoma (PTCL), T-lymphoblastic lymphoma (T-LBL) and in healthy control dogs. One lymph node was also studied at the end of therapy in a subset of dogs in remission for DLBCL. In controls, PDGF-A, PDGFR-α and PDGFR-β mRNA levels were significantly higher than in DLBCLs, PTCLs and T-LBLs. However, PDGFR-α and PDGFR-β were minimally expressed by lymphocytes and plasma cells in normal lymph nodes as determined by immunohistochemistry, while neoplastic B and T cells showed the highest score (P <0.05). This discordant result may be compatible with the constitutive expression of these molecules by endothelial cells and fibroblasts in normal lymph nodes, thereby influencing gene expression results. Furthermore, these cells were not included in the immunohistochemical analysis. Similarly, dogs with DLBCL that were in remission at the end of therapy showed significantly higher gene expression of PDGFs and receptors than at the time of diagnosis and with an opposite trend to the protein assay. PDGF-B protein and mRNA were overexpressed in PTCLs and T-LBLs when compared with DLBCLs and controls (P <0.05). Additionally, there was a correlation between protein expression of PDGF-B and both PDGFRs in PTCLs and T-LBLs, suggesting an autocrine or paracrine loop in the aetiology of aggressive canine T-cell lymphomas. These data provide a rationale for the use of PDGFR antagonists in the therapy of aggressive T-cell lymphomas, but not in DLBCLs.
Insights
Platelet-derived growth factors (PDGFs) and their receptors (PDGFRs) play a role in canine lymphoma. PDGF-B is overexpressed in aggressive T-cell lymphomas, suggesting PDGFR antagonists could be a potential therapy.
Area of Science:
- Veterinary Oncology
- Molecular Biology
- Cancer Research
Background:
- Platelet-derived growth factors (PDGFs) and their receptors (PDGFRs) are crucial in cell signaling and implicated in human cancers.
- PDGFRs are therapeutic targets for kinase inhibitors in human oncology.
- The role of PDGF-A, PDGF-B, PDGFR-α, and PDGFR-β in canine lymphoma remains to be fully elucidated.
Purpose of the Study:
- To investigate the expression of PDGF-A, PDGF-B, PDGFR-α, and PDGFR-β in canine lymphoma.
- To determine the potential role of these factors in the pathogenesis of canine diffuse large B-cell lymphoma (DLBCL), peripheral T-cell lymphoma (PTCL), and T-lymphoblastic lymphoma (T-LBL).
- To evaluate the potential of PDGFR antagonists as a therapeutic strategy for canine lymphomas.
Main Methods:
- Gene and protein expression analysis of PDGF-A, PDGF-B, PDGFR-α, and PDGFR-β in lymph node samples from dogs with DLBCL, PTCL, T-LBL, and healthy controls.
- Immunohistochemistry was used to assess protein expression in specific cell types.
- Analysis included samples from dogs in remission for DLBCL post-therapy.
Main Results:
- Control lymph nodes showed significantly higher mRNA levels of PDGF-A, PDGFR-α, and PDGFR-β compared to lymphoma types.
- Immunohistochemistry revealed minimal PDGFR expression in normal lymphocytes and plasma cells, but high expression in neoplastic B and T cells.
- PDGF-B (protein and mRNA) was overexpressed in PTCLs and T-LBLs compared to DLBCLs and controls, with a correlation to PDGFR expression, suggesting autocrine/paracrine loops.
- DLBCL remission samples showed increased gene expression of PDGFs and receptors compared to diagnosis, contrasting with protein assay trends.
Conclusions:
- PDGFRs are highly expressed on neoplastic canine lymphocytes, unlike in normal lymph nodes.
- Overexpression of PDGF-B and its receptors in aggressive T-cell lymphomas suggests a potential autocrine/paracrine mechanism.
- PDGFR antagonists may be a viable therapeutic option for aggressive canine T-cell lymphomas, but not for DLBCL.
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