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Hydrogel surfaces to promote attachment and spreading of endothelial progenitor cells

机译:水凝胶表面促进内皮祖细胞的附着和扩散

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Endothelialization of artificial vascular grafts is a challenging process in cardiovascular tissue engineering. Functionalized biomaterials could be promising candidates to promote endothelialization in repair of cardiovascular injuries. The purpose of this study was to synthesize hyaluronic acid (HA) and heparin-based hydrogels that could promote adhesion and spreading of endothelial progenitor cells (EPCs). We report that the addition of heparin into HA-based hydrogels provides an attractive surface for EPCs promoting spreading and the formation of an endothelial monolayer on the hydrogel surface. To increase EPC adhesion and spreading, we covalently immobilized CD34 antibody (Ab) on HA-heparin hydrogels, using standard EDC/NHS amine-coupling strategies. We found that EPC adhesion and spreading on CD34 Ab-immobilized HA-heparin hydrogels was significantly higher than their non-modified analogues. Once adhered, EPCs spread and formed an endothelial layer on both non-modified and CD34 Ab-modified HA-heparin hydrogels after 3days of culture. We did not observe significant adhesion and spreading when heparin was not included in the control hydrogels. In addition to EPCs, we also used human umbilical cord vein endothelial cells (HUVECs), which adhered and spread on HA-heparin hydrogels. Macrophages exhibited significantly less adhesion compared to EPCs on the same hydrogels. This composite material could possibly be used to develop surface coatings for artificial cardiovascular implants, due to its specificity for EPC and endothelial cells on an otherwise non-thrombogenic surface.
机译:人造血管移植物的内皮化在心血管组织工程中是一个具有挑战性的过程。功能化的生物材料可能有望在修复心血管损伤中促进内皮化。这项研究的目的是合成透明质酸(HA)和肝素基水凝胶,可以促进内皮祖细胞(EPC)的粘附和扩散。我们报告说,肝素添加到基于HA的水凝胶中为EPC促进扩散和在水凝胶表面上形成内皮单层提供了一个有吸引力的表面。为了增加EPC粘附和扩散,我们使用标准EDC / NHS胺偶联策略将CD34抗体(Ab)共价固定在HA-肝素水凝胶上。我们发现,EPC粘附和CD34抗体固定HA-肝素水凝胶上的扩散明显高于其未修饰的类似物。一旦粘附,培养3天后,EPC在未修饰的和CD34 Ab修饰的HA-肝素水凝胶上扩散并形成内皮层。当对照水凝胶中不包括肝素时,我们没有观察到明显的粘附和扩散。除EPC外,我们还使用了人脐带静脉内皮细胞(HUVEC),该细胞粘附并在HA-肝素水凝胶上扩散。与在相同水凝胶上的EPC相比,巨噬细胞表现出明显更少的粘附力。这种复合材料由于对EPC和其他非血栓形成表面上的内皮细胞具有特异性,因此可用于开发人工心血管植入物的表面涂层。

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