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Updated: Nov 3, 2025

Establishment of a Human Multiple Myeloma Xenograft Model in the Chicken to Study Tumor Growth, Invasion and Angiogenesis
Published on: May 1, 2015
Pentraxin 3 Inhibits the Angiogenic Potential of Multiple Myeloma Cells
Roberto Ronca1, Sara Taranto1, Michela Corsini1
1Department of Molecular and Translational Medicine, University of Brescia, 25123 Brescia, Italy.
Abstract:
During multiple myeloma (MM) progression the activation of the angiogenic process represents a key step for the formation of the vascular niche, where different stromal components and neoplastic cells collaborate and foster tumor growth. Among the different pro-angiogenic players, Fibroblast Growth Factor 2 (FGF2) plays a pivotal role in BM vascularization occurring during MM progression. Long Pentraxin 3 (PTX3), a natural FGF antagonist, is able to reduce the activation of stromal components promoted by FGF2 in various in vitro models. An increased FGF/PTX3 ratio has also been found to occur during MM evolution, suggesting that restoring the "physiological" FGF/PTX3 ratio in plasma cells and BM stromal cells (BMSCs) might impact MM. In this work, taking advantage of PTX3-inducible human MM models, we show that PTX3 produced by tumor cells is able to restore a balanced FGF/PTX3 ratio sufficient to prevent the activation of the FGF/FGFR system in endothelial cells and to reduce the angiogenic capacity of MM cells in different in vivo models. As a result of this anti-angiogenic activity, PTX3 overexpression causes a significant reduction of the tumor burden in both subcutaneously grafted and systemic MM models. These data pave the way for the exploitation of PTX3-derived anti-angiogenic approaches in MM.
Insights
Restoring the FGF/PTX3 balance with Long Pentraxin 3 (PTX3) combats multiple myeloma (MM) angiogenesis. PTX3 production by tumor cells reduces tumor growth and vascularization in MM models.
Area of Science:
- Oncology
- Molecular Biology
- Angiogenesis Research
Background:
- Multiple myeloma (MM) progression relies on angiogenesis for its vascular niche.
- Fibroblast Growth Factor 2 (FGF2) is crucial for bone marrow (BM) vascularization in MM.
- An elevated FGF2/Long Pentraxin 3 (PTX3) ratio is observed during MM evolution.
Purpose of the Study:
- To investigate the therapeutic potential of restoring the FGF/PTX3 ratio in MM.
- To evaluate the anti-angiogenic and anti-tumor effects of PTX3 in MM models.
Main Methods:
- Utilized PTX3-inducible human MM models.
- Assessed the impact of PTX3 on FGF/FGFR signaling in endothelial cells.
- Evaluated MM cell angiogenic capacity in vitro and in vivo.
- Quantified tumor burden in subcutaneous and systemic MM models.
Main Results:
- Tumor-derived PTX3 restored a balanced FGF/PTX3 ratio.
- PTX3 inhibited FGF/FGFR system activation in endothelial cells.
- PTX3 reduced MM cell angiogenesis and tumor burden in vivo.
Conclusions:
- PTX3 exhibits significant anti-angiogenic and anti-tumor activity in MM.
- Restoring the FGF/PTX3 balance is a promising therapeutic strategy for MM.
- PTX3-based approaches warrant further investigation for MM treatment.
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