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首页> 外文期刊>Tissue engineering >Repair of osteochondral defect with tissue-engineered two-phase composite material of injectable calcium phosphate and hyaluronan sponge.
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Repair of osteochondral defect with tissue-engineered two-phase composite material of injectable calcium phosphate and hyaluronan sponge.

机译:用组织工程化的可注射磷酸钙和透明质酸海绵两相复合材料修复骨软骨缺损。

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摘要

Articular cartilage has limited capacity for repair. In the present study, tissue-engineered two-phase composite material was used for the repair of osteochondral defects in young adult rabbit knee. This composite material is composed of an injectable calcium phosphate (ICP) and a hyaluronan (HA) derivate of either ACP or HYAFF 11 sponge. The osteochondral defect, 3 mm in diameter and 3 mm deep, was created in the weight-bearing region of the medial femoral condyle. The bone portion of the defect was first filled with ICP to a level approximately 1 mm below the articular surface. HA sponge (3 mm in diameter and 1-1.2 mm thick), with or without loading of autologous bone marrow-derived progenitor cells (MPCs), was then inserted into the defect on top of the ICP as it hardened. Animals were allowed free cage activity postoperatively, and killed 4 or 12 weeks (for the HYAFF 11 sponge group) after the surgery. At 4 weeks, histological examination showed that the defect was filled up to 90-100% of its depth. Whitish repair tissue on the top appeared to be integrated with the surrounding articular cartilage. Four distinct zones of repair tissue were identified: a superficial layer, a chondroid tissue layer, an interface between HA sponge and ICP, and the ICP material. Evidence of extensive osteoclastic and osteoblastic activities was observed in the bone tissue surrounding the defect edge and in ICP material. By 12 weeks, the zonal features of the repair tissue became more distinct; chondrocytes were arranged in a columnar array, and a calcified layer of cartilage was formed beneath the chondroid tissue in some specimens. The healing tissue of the HA sponge material loaded with MPCs had higher cellular density and better integration with the surrounding cartilage than HA sponge material not loaded with MPCs. This study suggests that using a two-phase composite graft may hold potential for the repair of osteochondral defects by providing mechanical support that mimicks subchondral bone, while also providing a chondrogenic scaffold for the top cartilage repair.
机译:关节软骨的修复能力有限。在本研究中,组织工程化的两相复合材料被用于修复成年成年兔膝盖的骨软骨缺损。这种复合材料由可注射的磷酸钙(ICP)和ACP或HYAFF 11海绵的透明质酸(HA)组成。股骨内侧con的承重区域形成了直径3 mm,深3 mm的骨软骨缺损。首先用ICP填充缺损的骨部分,使其低于关节表面约1 mm。然后将具有或不带有自体骨髓源祖细胞(MPC)的HA海绵(直径3毫米,厚度1-1.2毫米),在ICP变硬时插入到ICP顶部的缺损中。允许动物在术后自由进行笼活动,并在手术后4或12周处死(对于HYAFF 11海绵组)。在第4周,组织学检查显示缺损被填充至其深度的90-100%。顶部的白色修复组织似乎与周围的关节软骨融合在一起。确定了修复组织的四个不同区域:表层,软骨组织层,HA海绵和ICP之间的界面以及ICP材料。在缺陷边缘周围的骨组织和ICP材料中观察到了广泛的破骨和成骨活性。到12周时,修复组织的带状特征变得更加明显。软骨细胞排列成圆柱状,在一些标本中,软骨组织下方形成了钙化的软骨层。载有MPC的HA海绵材料的愈合组织比未载有MPC的HA海绵材料的细胞密度更高,并且与周围软骨的融合更好。这项研究表明,使用两相复合材料移植物可以通过提供模仿软骨下骨的机械支持,为软骨软骨缺损的修复提供潜力,同时还可以为软骨的顶部修复提供软骨支架。

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