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Albumin-Enriched Fibrin Hydrogel Embedded in Active Ferromagnetic Networks Improves Osteoblast Differentiation and Vascular Self-Organisation

机译:嵌入主动铁磁网络的富含白蛋白的纤维蛋白水凝胶改善成骨细胞分化和血管自组织。

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摘要

Porous coatings on prosthetic implants encourage implant fixation. Enhanced fixation may be achieved using a magneto-active porous coating that can deform elastically in vivo on the application of an external magnetic field, straining in-growing bone. Such a coating, made of 444 ferritic stainless steel fibres, was previously characterised in terms of its mechanical and cellular responses. In this work, co-cultures of human osteoblasts and endothelial cells were seeded into a novel fibrin-based hydrogel embedded in a 444 ferritic stainless steel fibre network. Albumin was successfully incorporated into fibrin hydrogels improving the specific permeability and the diffusion of fluorescently tagged dextrans without affecting their Young’s modulus. The beneficial effect of albumin was demonstrated by the upregulation of osteogenic and angiogenic gene expression. Furthermore, mineralisation, extracellular matrix production, and formation of vessel-like structures were enhanced in albumin-enriched fibrin hydrogels compared to fibrin hydrogels. Collectively, the results indicate that the albumin-enriched fibrin hydrogel is a promising bio-matrix for bone tissue engineering and orthopaedic applications.
机译:假体上的多孔涂层可促进固定。使用磁活性多孔涂层可以实现增强的固定,该涂层可以在施加外部磁场时在体内弹性变形,使正在生长的骨骼张紧。这种由444种铁素体不锈钢纤维制成的涂层,先前已根据其机械和细胞反应进行了表征。在这项工作中,将人类成骨细胞和内皮细胞的共培养物接种到嵌入在444铁素体不锈钢纤维网络中的新型基于纤维蛋白的水凝胶中。白蛋白已成功地掺入纤维蛋白水凝胶中,从而改善了荧光标记的葡聚糖的比渗透率和扩散,而不会影响它们的杨氏模量。白蛋白的有益作用通过成骨和血管生成基因表达的上调证明。此外,与血纤蛋白水凝胶相比,富含白蛋白的血纤蛋白水凝胶的矿化作用,细胞外基质产生和血管样结构的形成都得到了增强。总体而言,结果表明,富含白蛋白的纤维蛋白水凝胶是用于骨组织工程和骨科应用的有前途的生物基质。

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