Proteomics reveals differential adsorption of angiogenic platelet lysate proteins on calcium phosphate bone substitute materials

Author:

da Costa Marques Richard12,Simon Johanna12,d’Arros Cyril34,Landfester Katharina2,Jurk Kerstin5ORCID,Mailänder Volker12ORCID

Affiliation:

1. Dermatology Clinic, University Medical Center of the Johannes Gutenberg-University Mainz , 55131 Mainz, Germany

2. Max Planck Institute for Polymer Research , 55128 Mainz, Germany

3. INSERM, UMR 1229, Regenerative Medicine and Skeleton, ONIRIS, Université de Nantes , 44042 Nantes, France

4. Biomatlante—Advanced Medical Solutions Group Plc , 44360 Vigneux-de-Bretagne, France

5. Center for Thrombosis and Hemostasis (CTH), University Medical Center of the Johannes Gutenberg-University Mainz , 55131 Mainz, Germany

Abstract

Abstract Protein adsorption on biomaterials for bone substitution, such as calcium phosphates (CaP), evokes biological responses and shapes the interactions of biomaterials with the surrounding biological environment. Proteins adsorb when CaP materials are combined with growth factor-rich hemoderivatives prior to implantation to achieve enhanced angiogenesis and stimulate new bone formation. However, the identification of the adsorbed proteins and their angiogenic effect on bone homeostasis remain incompletely investigated. In this study, we analyzed the adsorbed complex protein composition on CaP surfaces when using the hemoderivatives plasma, platelet lysate in plasma (PL), and washed platelet lysate proteins (wPL). We detected highly abundant, non-regenerative proteins and anti-angiogenic proteins adsorbed on CaP surfaces after incubation with PL and wPL by liquid chromatography and mass spectrometry (LC–MS) proteomics. Additionally, we measured a decreased amount of adsorbed pro-angiogenic growth factors. Tube formation assays with human umbilical endothelial cells demonstrated that the CaP surfaces only stimulate an angiogenic response when kept in the hemoderivative medium but not after washing with PBS. Our results highlight the necessity to correlate biomaterial surfaces with complex adsorbed protein compositions to tailor the biomaterial surface toward an enrichment of pro-angiogenic factors.

Funder

Johannes Gutenberg-University Mainz

German Federal Ministry of Education and Research

Publisher

Oxford University Press (OUP)

Subject

Biomaterials

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