Angiogenic Properties of Concentrated Growth Factors (CGFs): The Role of Soluble Factors and Cellular Components

Ангиогенные свойства концентрированных факторов роста (CGF): роль растворимых факторов и клеточных компонентов
Maria Annunziata Carluccio, Marika Massaro, Egeria Scoditti, Fabrizio Damiano, Luisa Siculella, Andrea Palermo, Christian Demitri, Paola Nitti, Eleonora Stanca, Nadia Calabriso, Alessio Rochira, Laura Giannotti, Benedetta Di Chiara Stanca
2021-04-29

Matrigel assayVEGF and TGF-β1angiogenesisconcentrated growth factorsendothelial progenitor cells
Blood-derived concentrated growth factors (CGFs) represent a novel autologous biomaterial with promising applications in regenerative medicine. Angiogenesis is a key factor in tissue regeneration, but the role played by CGFs in vessel formation is not clear. The purpose of this study was to characterize the angiogenic properties of CGFs by evaluating the effects of its soluble factors and cellular components on the neovascularization in an in vitro model of angiogenesis. CGF clots were cultured for 14 days in cell culture medium; after that, CGF-conditioned medium (CGF-CM) was collected, and soluble factors and cellular components were separated and characterized. CGF-soluble factors, such as growth factors (VEGF and TGF-β1) and matrix metalloproteinases (MMP-2 and -9), were assessed by ELISA. Angiogenic properties of CGF-soluble factors were analyzed by stimulating human cultured endothelial cells with increasing concentrations (1%, 5%, 10%, or 20%) of CGF-CM, and their effect on cell migration and tubule-like formation was assessed by wound healing and Matrigel assay, respectively. The expression of endothelial angiogenic mediators was determined using qRT-PCR and ELISA assays. CGF-derived cells were characterized by immunostaining, qRT-PCR and Matrigel assay. We found that CGF-CM, consisting of essential pro-angiogenic factors, such as VEGF, TGF-β1, MMP-9, and MMP-2, promoted endothelial cell migration; tubule structure formation; and endothelial expression of multiple angiogenic mediators, including growth factors, chemokines, and metalloproteinases. Moreover, we discovered that CGF-derived cells exhibited features such as endothelial progenitor cells, since they expressed the CD34 stem cell marker and endothelial markers and participated in the neo-angiogenic process. In conclusion, our results suggest that CGFs are able to promote endothelial angiogenesis through their soluble and cellular components and that CGFs can be used as a biomaterial for therapeutic vasculogenesis in the field of tissue regeneration.
1
Both soluble and cellular CGF components support angiogenesis, indicating potential use in therapeutic vasculogenesis and tissue regeneration.
2
CGF-conditioned medium contains pro-angiogenic VEGF, TGF-β1, MMP-2, and MMP-9 soluble factors.
3
CGF-conditioned medium increases endothelial expression of angiogenic growth factors, chemokines, and metalloproteinases.
4
CGF-conditioned medium promotes endothelial cell migration and tubule-like structure formation in vitro.
5
CGF-derived cells express CD34 and endothelial markers, exhibit endothelial progenitor-like features, and participate in neo-angiogenesis.

Blood-derived concentrated growth factors (CGFs), including their soluble factors and CGF-derived cellular components

Angiogenic activity of CGFs and the respective contributions of their soluble mediators and cellular components to endothelial migration, tubule formation, angiogenic mediator expression, and neovascularization

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2021-04-29
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Maria Annunziata Carluccio
Marika Massaro
Egeria Scoditti
Fabrizio Damiano
Luisa Siculella
Andrea Palermo
Christian Demitri
Paola Nitti
Eleonora Stanca
Nadia Calabriso
Alessio Rochira
Laura Giannotti
Benedetta Di Chiara Stanca
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