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三维聚己内酯-羟基磷灰石支架联合骨髓细胞用于软骨组织工程

Three-dimensional polycaprolactone-hydroxyapatite scaffolds combined with bone marrow cells for cartilage tissue engineering.

作者信息

Wei Bo, Yao Qingqiang, Guo Yang, Mao Fengyong, Liu Shuai, Xu Yan, Wang Liming

机构信息

Department of Orthopaedic Surgery, Nanjing First Hospital, Nanjing Medical University, Nanjing, China Cartilage Regeneration Center, Nanjing First Hospital, Nanjing Medical University, Nanjing, China China-Korea United Cell Therapy Center, Nanjing First Hospital, Nanjing Medical University, Nanjing, China.

Department of Orthopaedic Surgery, Nanjing First Hospital, Nanjing Medical University, Nanjing, China Cartilage Regeneration Center, Nanjing First Hospital, Nanjing Medical University, Nanjing, China.

出版信息

J Biomater Appl. 2015 Aug;30(2):160-70. doi: 10.1177/0885328215575762. Epub 2015 Mar 11.

Abstract

The goal of this study was to investigate the chondrogenic potential of three-dimensional polycaprolactone-hydroxyapatite (PCL-HA) scaffolds loaded with bone marrow cells in vitro and the effect of PCL-HA scaffolds on osteochondral repair in vivo. Here, bone marrow was added to the prepared PCL-HA scaffolds and cultured in chondrogenic medium for 10 weeks. Osteochondral defects were created in the trochlear groove of 29 knees in 17 New Zealand white rabbits, which were then divided into four groups that underwent: implantation of PCL-HA scaffolds (left knee, n = 17; Group 1), microfracture (right knee, n = 6; Group 2), autologous osteochondral transplantation (right knee, n = 6; Group 3), and no treatment (right knee, n = 5; Control). Extracellular matrix produced by bone marrow cells covered the surface and filled the pores of PCL-HA scaffolds after 10 weeks in culture. Moreover, many cell-laden cartilage lacunae were observed, and cartilage matrix was concentrated in the PCL-HA scaffolds. After a 12-week repair period, Group 1 showed excellent vertical and lateral integration with host bone, but incomplete cartilage regeneration and matrix accumulation. An uneven surface of regenerated cartilage and reduced distribution of cartilage matrix were observed in Group 2. In addition, abnormal bone growth and unstable integration between repaired and host tissues were detected. For Group 3, the integration between transplanted and host cartilage was interrupted. Our findings indicate that the PCL-HA scaffolds loaded with bone marrow cells improved chondrogenesis in vitro and implantation of PCL-HA scaffolds for osteochondral repairenhanced integration with host bone. However, cartilage regeneration remained unsatisfactory. The addition of trophic factors or the use of precultured cell-PCL-HA constructs for accelerated osteochondral repair requires further investigation.

摘要

本研究的目的是体外研究负载骨髓细胞的三维聚己内酯-羟基磷灰石(PCL-HA)支架的软骨形成潜力以及PCL-HA支架对体内骨软骨修复的影响。在此,将骨髓添加到制备好的PCL-HA支架中,并在软骨形成培养基中培养10周。在17只新西兰白兔的29个膝关节的滑车沟中制造骨软骨缺损,然后将其分为四组,分别进行:植入PCL-HA支架(左膝,n = 17;第1组)、微骨折(右膝,n = 6;第2组)、自体骨软骨移植(右膝,n = 6;第3组)和不治疗(右膝,n = 5;对照组)。培养10周后,骨髓细胞产生的细胞外基质覆盖了PCL-HA支架的表面并填充了其孔隙。此外,观察到许多充满细胞的软骨陷窝,并且软骨基质集中在PCL-HA支架中。经过12周的修复期后,第1组显示出与宿主骨良好的垂直和侧向整合,但软骨再生不完全且基质积累。在第2组中观察到再生软骨表面不均匀以及软骨基质分布减少。此外,检测到异常的骨生长以及修复组织与宿主组织之间的整合不稳定。对于第3组,移植的软骨与宿主软骨之间的整合中断。我们的研究结果表明,负载骨髓细胞的PCL-HA支架在体外改善了软骨形成,并且植入PCL-HA支架进行骨软骨修复增强了与宿主骨的整合。然而,软骨再生仍然不尽人意。添加营养因子或使用预培养的细胞-PCL-HA构建体以加速骨软骨修复需要进一步研究。

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