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Construction of tissue-engineered osteochondral composites and repair of large joint defects in rabbit

机译:组织工程骨软骨复合材料的构建及大关节缺损的修复

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In this study, a novel three-dimensional (3D) heterogeneous/bilayered scaffold was constructed to repair large defects in rabbit joints. The scaffold includes two distinct but integrated layers corresponding to the cartilage and bone components. The upper layer consists of gelatin, chondroitin sulphate and sodium hyaluronate (GCH), and the lower layer consists of gelatin and ceramic bovine bone (GCBB). The two form a 3D bilayered scaffold (GCH-GCBB), which mimics the natural osteochondral matrix for use as a scaffold for osteochondral tissue engineering. The purpose of this study was to evaluate the efficacy of this novel scaffold, combined with chondrocytes and bone marrow stem cells (BMSCs) to repair large defects in rabbit joints. Thirty-six large defects in rabbit femoral condyles were created; 12 defects were treated with the same scaffold combined with cells (group A); another 12 defects were treated with cell-free scaffolds (group B); the others were untreated (group C). At 6 and 12weeks, in group A hyaline-like cartilage formation could be observed by histological examination; the newly formed cartilage, which stained for type II collagen, was detected by RT-PCR at high-level expression. Most of the GCBB was replaced by bone, while little remained in the underlying cartilage. At 36weeks, GCBB was completely resorbed and a tidemark was observed in some areas. In contrast, groups B and C showed no cartilage formation but a great amount of fibrous tissue, with only a little bone formation. In summary, this study demonstrated that a novel scaffold, comprising a top layer of GCH, having mechanical properties comparable to native cartilage, and a bottom layer composed of GCBB, could be used to repair large osteochondral defects in joints.
机译:在这项研究中,新型的三维(3D)异质/双层支架被构建来修复兔子关节中的大缺陷。支架包括与软骨和骨成分相对应的两个不同但一体的层。上层由明胶,硫酸软骨素和透明质酸钠(GCH)组成,下层由明胶和陶瓷牛骨(GCBB)组成。两者形成3D双层支架(GCH-GCBB),该支架模仿天然的骨软骨基质,用作骨软骨组织工程的支架。这项研究的目的是评估这种新颖的支架,结合软骨细胞和骨髓干细胞(BMSC)修复兔关节大缺陷的功效。在兔股骨dy中形成了36个大缺损。用相同的支架结合细胞治疗12个缺损(A组);用无细胞支架治疗另外12个缺陷(B组);其余未接受治疗(C组)。在第6周和第12周,通过组织学检查可以观察到A组透明样软骨形成;通过RT-PCR检测到新形成的软骨,该软骨已被II型胶原染色。 GCBB的大部分已被骨头取代,而残留在下面的软骨中几乎没有。在第36周,GCBB被完全吸收,并且在某些区域观察到潮汐。相反,B组和C组未显示软骨形成,而是大量的纤维组织,仅形成少量骨。总而言之,这项研究表明,一种新型脚手架可用于修复关节中的大型骨软骨缺损,该脚手架具有GCH的顶层,其机械性能与天然软骨相当,而底层由GCBB组成。

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