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Ferritinophagy: a possible new iron-related metabolic target in canine osteoblastic osteosarcoma
Karen Power1, Rebecca Leandri1, Giorgia Federico2
1Department of Biology, University of Naples Federico II, Naples, Italy.
Abstract:
Canine osteosarcomas (COS) are the most common bone tumors in dogs, characterized by high metastatic rates, poor prognosis, and poor responsiveness to routine therapies, which highlights the need for new treatment targets. In this context, the metabolism of neoplastic cells represents an increasingly studied element, as cancer cells depend on particular metabolic pathways that are also elements of vulnerability. Among these, tumor cells (TCs) show higher iron requirements to sustain proliferation (so-called iron addiction), which are achieved by increasing iron uptake and/or by activating ferritinophagy, a process mediated by the Nuclear receptor Co-Activator 4 (NCOA4) leading to iron mobilization from ferritin (Ft) deposits. Previous studies have shown that COS cells overexpress Transferrin Receptor 1 (TfR1) to increase iron uptake. In this study we evaluated the immunohistochemical expression of ferritinophagy-related proteins, namely Ferritin Heavy chain (FTH1) and NCOA4, and proliferating cell nuclear antigen (PCNA) in canine normal bone and canine osteoblastic osteosarcoma (COOS) samples. Normal samples revealed negative/weak immunoreactivity for FTH1, NCOA4 and PCNA in <10% of osteocytes. In COOS samples the majority of neoplastic cells showed immunoreactivity to FTH1, NCOA4 and PCNA. Our data suggest that the activation of ferritinophagy by COOS cells responds to the need for feed their "iron addiction." These data, though preliminary, further suggest that targeting iron metabolism represents a new potential strategy worthy of further study to be transferred into clinical practice.
Insights
Canine osteosarcoma cells exhibit increased iron requirements, activating ferritinophagy to meet this demand. Targeting iron metabolism offers a potential new therapeutic strategy for this aggressive bone cancer.
Area of Science:
- Oncology
- Canine Medicine
- Cellular Metabolism
Background:
- Canine osteosarcomas (COS) are aggressive bone tumors with poor prognosis.
- Neoplastic cells exhibit altered metabolism, including increased iron requirements ('iron addiction').
- Ferritinophagy, mediated by Nuclear receptor Co-Activator 4 (NCOA4), mobilizes iron from ferritin (Ft) deposits.
Purpose of the Study:
- To investigate the expression of ferritinophagy-related proteins (FTH1, NCOA4) and PCNA in canine osteoblastic osteosarcoma (COOS).
- To explore the role of iron metabolism and ferritinophagy in COOS pathogenesis.
Main Methods:
- Immunohistochemical analysis of FTH1, NCOA4, and PCNA expression.
- Comparison between normal canine bone samples and COOS samples.
Main Results:
- Normal bone osteocytes showed minimal FTH1, NCOA4, and PCNA immunoreactivity.
- COOS samples displayed significant immunoreactivity for FTH1, NCOA4, and PCNA in neoplastic cells.
- Elevated expression suggests ferritinophagy activation in COOS cells.
Conclusions:
- COOS cells likely activate ferritinophagy to support their iron addiction.
- Targeting iron metabolism presents a promising, novel therapeutic avenue for canine osteosarcoma.
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