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Integrational Technologies for the Development of Three-Dimensional Scaffolds as Platforms in Cartilage Tissue Engineering

机译:三维脚手架作为软骨组织工程平台开发的整合技术

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摘要

The prevalence of osteoarthritis is on the rise, and an effective treatment for cartilage defects is still being sought. Cartilage tissue in vivo encompasses complex structures and composition, both of which influence cells and many properties of the native cartilage. The extracellular matrix structure and components provides both morphological cues and the necessary signals to promote cell functions including metabolism, proliferation, and differentiation. In the present study, cryo-printing and electrospinning were combined to produce multizone scaffolds that consist of three distinctive zones. These scaffolds successfully mimic the collagen fiber orientation of the native cartilage. Moreover, in vitro analysis of chondrocyte-seeded scaffolds demonstrated the ability of multizone scaffolds to support long-term chondrocyte attachment and survival over a 5 week culture period. Moreover, multizone scaffolds were found to regulate the expression of key genes in comparison to the controls and allowed the detection of sulfated glycosaminoglycan. Evaluation of the compressive properties revealed that the multizone scaffolds possess more suitable mechanical properties, for the native cartilage, in comparison to the electrospun and phase-separated controls. Multizone scaffolds provide viable initial platforms that capture the complex structure and compressive properties of the native cartilage. They also maintain chondrocyte phenotype and function, highlighting their potential in cartilage tissue engineering applications.
机译:骨关节炎的患病率正在上升,并且仍在寻求有效的软骨缺陷治疗。软骨组织在体内包括复杂的结构和组合物,其中两者都影响细胞和天然软骨的许多性质。细胞外基质结构和组分提供形态学提示和必要的信号,以促进细胞功能,包括代谢,增殖和分化。在本研究中,组合冷冻印刷和静电纺丝,以产生由三个独特区域组成的多型支架。这些支架成功地模仿了天然软骨的胶原纤维取向。此外,对软骨细胞种子支架的体外分析证明了多型支架支持长期软骨细胞附着和生存率在5周内培养期的能力。此外,发现多胶石支架调节关键基因的表达与对照相比,并允许检测硫酸化糖胺聚糖。与电纺和相分离的对照相比,对抗压性质的评价显示,多态支架具有更合适的机械性能,用于天然软骨。多态脚手架提供可行的初始平台,捕获原生软骨的复杂结构和压缩性质。它们还保持软骨细胞表型和功能,突出了它们在软骨组织工程应用中的潜力。

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