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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Collagen grafted 3D polycaprolactone scaffolds for enhanced cartilage regeneration
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Collagen grafted 3D polycaprolactone scaffolds for enhanced cartilage regeneration

机译:胶原蛋白嫁接的3D聚己内酯支架可增强软骨再生

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Current surgical and repair treatments for articular cartilage defects still do not give satisfactory long-term results. Scaffold-based tissue engineering is the subject of much intensive interest. However, one major hurdle is that it is unable to accurately replicate the internal three dimensional (3D) microstructure of cartilage. In this work, a novel electrohydrodynamic printing (E-Jetting) technique was employed to fabricate 3D polycaprolactone (PCL) scaffolds, followed by collagen grafting mediated by polydopamine. Surface topography, chemical composition, and wettability of the scaffolds before and after surface functionalization were characterized. Porcine chondrocytes were seeded within the scaffolds for chondrogenesis evaluation. The results showed that a 3D PCL scaffold with controlled fibre diameter, orientation, and pore size was fabricated by the E-Jetting system. The surface functionalization made the PCL scaffold hydrophilic and favourable for cell attachment. The chondrocytes maintained their healthy phenotypes within the collagen grafted PCL scaffold. The increased production of sulfated glycosaminoglycan and highly expressed collagen type II demonstrated that collagen had a positive role in stimulating chondrogenesis and the collagen grafted PCL scaffold was effective in cartilage regeneration.
机译:当前针对关节软骨缺损的外科手术和修复治疗仍不能获得令人满意的长期效果。基于支架的组织工程是引起广泛关注的主题。然而,一个主要障碍是它无法准确复制软骨的内部三维(3D)微观结构。在这项工作中,一种新颖的电动流体印刷(E-Jetting)技术被用于制造3D聚己内酯(PCL)支架,然后由聚多巴胺介导的胶原接枝。表征了表面功能化前后支架的表面形貌,化学组成和润湿性。将猪软骨细胞接种在支架内以评估软骨形成。结果表明,通过E-Jetting系统制造了具有受控纤维直径,方向和孔径的3D PCL支架。表面功能化使PCL支架具有亲水性并有利于细胞附着。软骨细胞在胶原蛋白嫁接的PCL支架内保持健康的表型。硫酸糖胺聚糖的生产增加和高表达的II型胶原蛋白表明,胶原蛋白在刺激软骨形成中具有积极作用,而胶原蛋白接枝的PCL支架在软骨再生中有效。

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