Key result
Pulmonary artery sarcomas show similar microvessel density compared to benign cardiac myxomas.
Why the study?
The significance of assessing angiogenesis in soft tissue cardiovascular tumors remains debated, motivating comparison of vascularisation in cardiac myxomas and pulmonary artery sarcomas.
Observational (n=38)
Yes
Absolute Event Rate: 32.42% vs 24.79%
p-value: p=0.16
Benign cardiac myxomas and malignant pulmonary artery sarcomas develop comparable vascularisation, with hypoxia appearing to be the strongest inducer of neoangiogenesis in sarcomas.
Similar vascularization does not distinguish these tumors; leaves open shared angiogenesis targets for hypothesis-generating research.
Neoangiogenesis is involved in the development and progression of malignant tumors. Vascular endothelial growth factor (VEGF) and its receptors have been designated a central part in this process. Since the significance of the assessment of angiogenesis in soft tissue tumors is still a matter of debate, we investigated the vascularisation of cardiac myxomas and compared it with pulmonary artery sarcomas (PAS). Angiogenesis in 18 PAS and 20 myxomas was assessed by morphometry. An immunohistochemical analysis of growth factors and their receptors, HIF-1alpha and tumor-associated macrophages (TAM) was performed. Results showed that microvessel density (MVD) in PAS was significantly higher at the border of necrosis versus the areas without necrosis but no difference was observed between PAS and myxomas. Vascular surface area (VSA) and intervascular distances showed a higher vascularisation at the border of necrosis compared to myxomas, which was not significant. VEGF expression was higher in PAS compared to myxomas and was prominent at the sites of necrosis. HIF-1alpha expression was marked at the border of necrosis in PAS but was absent in myxomas. Infiltration of the macrophages was significantly higher in myxomas compared to the sarcomas. VEGFR-2 expression was detected in a subset of tumor cells and in blood vessels mainly at the tumor periphery, whereas VEGFR-1 was weakly expressed in the tumors but prominent in the macrophages in cardiac myxomas. PDGF receptors and their ligands are strongly present in myxomas and to a lesser extent in the sarcomas. In conclusion, benign and malignant cardiovascular tumors with a different pathophysiology develop a comparable vascularisation. Hypoxia appears to be the strongest inducer of neoangiogenesis in the sarcomas. The expression of receptor tyrosine kinases of the VEGF family provides a basis for an adjuvant therapy.
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Andreas K.A. Gaumann (1994) conducted an observational in Cardiac myxoma and pulmonary artery sarcoma (n=38). Pulmonary artery sarcoma vs. Cardiac myxoma was evaluated on Overall microvessel density (MVD) (p=0.16). Malignant pulmonary artery sarcomas and benign cardiac myxomas demonstrated comparable overall microvessel density (32.42 vs 24.79, p=0.16), indicating similar vascularisation despite different pathophysiology.
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