University Center of Orthopaedic, Trauma and Plastic Surgery, University Hospital Carl Gustav Carus of Technische Universität Dresden, Fetscherstraße 74, 01307 Dresden, Germany.
Centre for Translational Bone, Joint and Soft Tissue Research, University Hospital Carl Gustav Carus and Faculty of Medicine of Technische Universität Dresden, Fetscherstraße 74, 01307 Dresden, Germany.
Int J Mol Sci. 2021 May 29;22(11):5836. doi: 10.3390/ijms22115836.
To develop cost-effective and efficient bone substitutes for improved regeneration of bone defects, heparin-modified mineralized collagen scaffolds were functionalized with concentrated, naturally occurring bioactive factor mixtures derived from adipose tissue, platelet-rich plasma and conditioned medium from a hypoxia-treated human bone marrow-derived mesenchymal stem cell line. Besides the analysis of the release kinetics of functionalized scaffolds, the bioactivity of the released bioactive factors was tested with regard to chemotaxis and angiogenic tube formation. Additionally, functionalized scaffolds were seeded with human bone marrow-derived mesenchymal stromal cells (hBM-MSC) and their osteogenic and angiogenic potential was investigated. The release of bioactive factors from the scaffolds was highest within the first 3 days. Bioactivity of the released factors could be confirmed for all bioactive factor mixtures by successful chemoattraction of hBM-MSC in a transwell assay as well as by the formation of prevascular structures in a 2D co-culture system of hBM-MSC and human umbilical vein endothelial cells. The cells seeded directly onto the functionalized scaffolds were able to express osteogenic markers and form tubular networks. In conclusion, heparin-modified mineralized collagen scaffolds could be successfully functionalized with naturally occurring bioactive factor mixtures promoting cell migration and vascularization.
为了开发具有成本效益且高效的骨替代物,以改善骨缺损的再生,用来源于脂肪组织、富含血小板的血浆和缺氧处理的人骨髓间充质干细胞系的条件培养基的浓缩的天然存在的生物活性因子混合物对肝素修饰的矿化胶原支架进行了功能化。除了分析功能化支架的释放动力学外,还测试了释放的生物活性因子的生物活性,以检测趋化性和血管生成管状形成。此外,用人骨髓间充质基质细胞(hBM-MSC)接种功能化支架,并研究其成骨和成血管潜能。在最初的 3 天内,支架中生物活性因子的释放量最高。通过在 Transwell 测定中成功地吸引 hBM-MSC,以及在 hBM-MSC 和人脐静脉内皮细胞的 2D 共培养系统中形成预血管结构,可以证实所有生物活性因子混合物释放的因子的生物活性。直接接种到功能化支架上的细胞能够表达成骨标志物并形成管状网络。总之,肝素修饰的矿化胶原支架可以成功地用促进细胞迁移和血管生成的天然存在的生物活性因子混合物进行功能化。