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A novel, visible light-induced, rapidly cross-linkable gelatin scaffold for osteochondral tissue engineering

机译:一种新颖的,可见光诱导的骨质色组织工程的快速可交联的明胶支架

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Osteochondral injuries remain difficult to repair. We developed a novel photo-cross-linkable furfurylamine-conjugated gelatin (gelatin-FA). Gelatin-FA was rapidly cross-linked by visible light with Rose Bengal, a light sensitizer, and was kept gelled for 3 weeks submerged in saline at 37°C. When bone marrow-derived stromal cells (BMSCs) were suspended in gelatin-FA with 0.05% Rose Bengal, approximately 87% of the cells were viable in the hydrogel at 24?h after photo-cross-linking, and the chondrogenic differentiation of BMSCs was maintained for up to 3 weeks. BMP4 fusion protein with a collagen binding domain (CBD) was retained in the hydrogels at higher levels than unmodified BMP4. Gelatin-FA was subsequently employed as a scaffold for BMSCs and CBD-BMP4 in a rabbit osteochondral defect model. In both cases, the defect was repaired with articular cartilage-like tissue and regenerated subchondral bone. This novel, photo-cross-linkable gelatin appears to be a promising scaffold for the treatment of osteochondral injury.
机译:骨质色神经伤害仍然难以修复。我们开发了一种新型的光交联糠醛胺缀合明胶(明胶-Fa)。 Gelatin-Fa通过玫瑰孟加拉,光敏化剂的可见光迅速交联,并保持凝胶化3周,在37℃下浸没在盐水中。当骨髓源性的基质细胞(BMSCs)悬浮在具有0.05%升升的明胶-FE中,在光交联后,在水凝胶中,约87%的细胞在水凝胶中可行,并且在光交联后在24℃下可行,并对BMSC的软骨形成分化保持长达3周。 BMP4融合蛋白,其具有胶原蛋白结合结构域(CBD)在水凝胶中保留在水凝胶中,其水凝胶比未修饰的BMP4更高。随后将明胶-FE用于BMSCs和CBD-BMP4的支架,兔骨色神经缺陷模型中的CBD-BMP4。在这两种情况下,用关节软骨样组织和再生的子骨髓骨修复缺陷。这种新颖的光交联明胶似乎是治疗骨损伤的有前途的支架。

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