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Multifunctional coatings combining bioactive peptides and affinity-based cytokine delivery for enhanced integration of degradable vascular grafts

机译:组合生物活性肽和基于亲和力的细胞因子递送的多功能涂层,用于增强可降解血管移植物的整合

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摘要

Insufficient endothelialization of cardiovascular devices is a high-risk factor for implant failure. Presentation of extracellular matrix (ECM)-derived coatings is a well-known strategy to improve implant integration. However, the complexity of the system is challenging and strategies for applying multifunctionality are required. Here, we engineered mussel-derived surface-binding peptides equipped with integrin (c[RGDfK]) and proteoglycan binding sites (FHRRIKA) for enhanced endothelialization. Surface-binding properties of the platform containing l-3,4-dihydroxyphenylalanine (DOPA) residues were confirmed for hydrophilized polycaprolactone-co-lactide scaffolds as well as for glass and polystyrene. Further, heparin and the heparin-binding angiogenic factors VEGF, FGF-2 and CXCL12 were immobilized onto the peptide in a modular assembly. Presentation of bioactive peptides greatly enhanced human umbilical vein endothelial cell (HUVEC) adhesion and survival under static and fluidic conditions. In subsequent investigations, peptide-heparin-complexes loaded with CXCL12 or VEGF had an additional increasing effect on cell viability, differentiation and migration. Finally, hemocompatibility of the coatings was ensured. This study demonstrates that coatings combining adhesion peptides, glycosaminoglycans and modulators are a versatile tool to convey ECM-inspired multifunctionality to biomaterials and efficiently promote their integration.
机译:心血管器件内皮内的内皮不足是植入物失效的高危因素。细胞外基质(ECM)的呈递是一种众所周知的改善植入物整合的策略。然而,系统的复杂性是具有挑战性的,需要施加多功能性的策略。在这里,我们设计了配备有整合蛋白(C [RGDFK])和蛋白多糖结合位点(FHRRrika)的贻贝衍生的表面结合肽,用于增强内皮化。确认含有L-3,4-二羟基苯基丙氨酸(DOPA)残基的平台的表面结合性能,用于亲水化的聚己内酯 - 共丙交酯支架以及玻璃和聚苯乙烯。此外,将肝素和肝素结合的血管生成因子VEGF,FGF-2和CXCL12固定在模块化组件中的肽上。生物活性肽的介绍极大地增强了静态和流体条件下的人脐静脉内皮细胞(HUVEC)粘附和存活。在随后的研究中,用CXCL12或VEGF负载的肽 - 肝素复合物对细胞活力,分化和迁移具有额外的效果。最后,确保了涂层的血液相位性。该研究表明,组合粘合肽,糖胺聚糖和调节剂的涂料是一种多功能工具,用于向生物材料传达ECM-Inspired的多功能性,有效地促进它们的整合。

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