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Published on: April 26, 2024
Sunitinib-induced morpho-functional changes and drug effectiveness in malignant solitary fibrous tumours
Rosalin D Spagnuolo1, Silvia Brich2,1, Fabio Bozzi1
1Laboratory of Experimental Molecular Pathology, Department of Diagnostic Pathology and Laboratory, Fondazione IRCCS Istituto Nazionale dei Tumori, Milan, Italy.
Abstract:
Sunitinib improves the outcomes of patients with solitary fibrous tumours (SFTs). The aim of this study was to investigate and contextualise sunitinib-induced morpho-functional changes in order to gain insights into the drug's mechanism of action.To this end, four surgical specimens obtained from two sunitinib-responsive patients with malignant SFT, and one primary cell culture obtained from fresh tumoral tissue and its stabilised cell line, were studied by means of immunohistochemistry, bright field in situ hybridisation, immunofluorescence/confocal microscopy, and biochemistry.The post-sunitinib surgical samples were characterised by two biologically relevant morpho-functional changes: clear areas and necrotic foci. The first were associated with the attenuation/loss of PDGFRB expression and decreased mTOR signalling, and corresponded to a pathological response. The second were associated with the over-expression of PDGFRB and VEGFA, strong mTOR signalling activation, and the appearance of HIF1α expression, hallmarks of pathological progression. The analysis clearly showed that sunitinib reduces the vascular supply network and inhibits tumoral cells. It also either induces autophagy, thus favouring drug response, or impairs autophagy as a result of lysosome sequestration, thus favouring disease progression. These distinct autophagic events were associated with different myeloid immune contextures. Finally, we also found that PDGFRB is one of the components of a complex that includes Beclin 1 and VPS34.The results of these tissue-based analyses provide new insights into sunitinib's mechanism of action in SFT patients.
Insights
Sunitinib impacts solitary fibrous tumors (SFTs) by altering cell morphology and function. The drug
Area of Science:
- Oncology
- Molecular Biology
- Pathology
Background:
- Solitary fibrous tumors (SFTs) are rare neoplasms.
- Sunitinib is a tyrosine kinase inhibitor used in cancer treatment.
- Understanding sunitinib's mechanism in SFTs is crucial for optimizing therapy.
Purpose of the Study:
- To investigate sunitinib-induced morpho-functional changes in SFTs.
- To elucidate the drug's mechanism of action in malignant SFT.
Main Methods:
- Immunohistochemistry
- In situ hybridization
- Confocal microscopy
- Biochemistry
- Analysis of surgical specimens and cell cultures.
Main Results:
- Sunitinib induced distinct changes: areas of pathological response (decreased PDGFRB, mTOR signaling) and pathological progression (increased PDGFRB, VEGFA, HIF1α, activated mTOR).
- The drug reduced tumor vascular supply and inhibited tumor cells.
- Autophagy modulation by sunitinib influenced drug response and disease progression, linked to myeloid immune contextures.
- PDGFRB was identified as part of a complex with Beclin 1 and VPS34.
Conclusions:
- Sunitinib's efficacy in SFTs involves complex interactions affecting tumor vascularity, cell signaling, and autophagy.
- Autophagy can be a mechanism for drug response or resistance in SFTs.
- These findings offer new insights into sunitinib's action in SFT patients.
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