Porous biomaterials which provide a structural and biological support for cells have immense potential in tissue engineering and cell-based therapies for tissue repair. Collagen biomaterials that can host endothelial cells represent promising tools for the vascularization of engineered tissues. Three-dimensional collagen scaffolds possessing controlled architecture and mechanical stiffness are obtained through freeze-drying of collagen suspensions, followed by chemical cross-linking which maintains their stability. However, cross-linking scaffolds renders their biological activity suboptimal for many cell types, including human umbilical vein endothelial cells (HUVECs), by inhibiting cell-collagen interactions. Here, we have improved crucial HUVEC interactions with such cross-linked collagen biomaterials by covalently coupling combinations of triple-helical peptides (THPs). These are ligands for collagen-binding cell-surface receptors (integrins or discoidin domain receptors) or secreted proteins (SPARC and von Willebrand factor). THPs enhanced HUVEC adhesion, spreading and proliferation on 2D collagen films. THPs grafted to 3D-cross-linked collagen scaffolds promoted cell survival over seven days. This study demonstrates that THP-functionalized collagen scaffolds are promising candidates for hosting endothelial cells with potential for the production of vascularized engineered tissues in regenerative medicine applications.
Collagen scaffolds functionalized with triple-helical peptides support 3D HUVEC culture.
用三螺旋肽功能化的胶原支架支持 3D HUVEC 培养
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作者:Malcor Jean-Daniel, Hunter Emma J, Davidenko Natalia, Bax Daniel V, Cameron Ruth, Best Serena, Sinha Sanjay, Farndale Richard W
| 期刊: | Regenerative Biomaterials | 影响因子: | 8.100 |
| 时间: | 2020 | 起止号: | 2020 Aug 18; 7(5):471-482 |
| doi: | 10.1093/rb/rbaa025 | 研究方向: | 其它 |
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