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Simple application of fibronectin–mimetic coating enhances osseointegration of titanium implants

机译:纤连蛋白模拟涂层的简单应用可增强钛植入物的骨整合

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摘要

Integrin‐mediated cell adhesion to biomolecules adsorbed onto biomedical devices regulates device integration and performance. Because of the central role of integrin‐fibronectin (FN) interactions in osteoblastic function and bone formation, we evaluated the ability of FN‐inspired biomolecular coatings to promote osteoblastic differentiation and implant osseointegration. Notably, these biomolecular coatings relied on physical adsorption of FN‐based ligands onto biomedical‐grade titanium as a simple, clinically translatable strategy to functionalize medical implants. Surfaces coated with a recombinant fragment of FN spanning the central cell binding domain enhanced osteoblastic differentiation and mineralization in bone marrow stromal cell cultures and increased implant osseointegration in a rat cortical bone model compared to passively adsorbed arginine–glycine–aspartic acid peptides, serum proteins and full‐length FN. Differences in biological responses correlated with integrin binding specificity and signalling among surface coatings. This work validates a simple, clinically translatable, surface biofunctionalization strategy to enhance biomedical device integration.
机译:整联蛋白介导的细胞对吸附在生物医学设备上的生物分子的粘附调节了设备的整合和性能。由于整联蛋白-纤连蛋白(FN)相互作用在成骨细胞功能和骨形成中的核心作用,我们评估了FN启发的生物分子涂层促进成骨细胞分化和植入骨整合的能力。值得注意的是,这些生物分子涂层依赖于基于FN的配体到生物医学级钛上的物理吸附,这是使医学植入物功能化的简单,可临床翻译的策略。与被动吸附的精氨酸-甘氨酸-天冬氨酸肽,血清蛋白和血清相比,覆盖有跨越中央细胞结合域的FN重组片段的表面增强了大鼠骨髓基质细胞培养物中成骨细胞的分化和矿化作用,并增加了大鼠皮质骨模型的植入物骨整合。全长FN。生物反应的差异与整齐蛋白结合特异性和表面涂层之间的信号传递有关。这项工作验证了一种简单的,可临床翻译的表面生物功能化策略,可以增强生物医学设备的集成度。

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