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使用单一和复合细胞接种支架在生物反应器中进行人软骨组织工程。

Tissue engineering of human cartilage in bioreactors using single and composite cell-seeded scaffolds.

作者信息

Mahmoudifar Nastaran, Doran Pauline M

机构信息

School of Biotechnology and Biomolecular Sciences, University of New South Wales, Sydney, New South Wales 2052, Australia.

出版信息

Biotechnol Bioeng. 2005 Aug 5;91(3):338-55. doi: 10.1002/bit.20490.

Abstract

Chondrocytes isolated from human fetal epiphyseal cartilage were seeded under mixed conditions into 15-mm-diameter polyglycolic acid (PGA) scaffolds and cultured in recirculation column bioreactors to generate cartilage constructs. After seeding, the cell distributions in thick (4.75 mm) and thin (2.15 mm) PGA disks were nonuniform, with higher cell densities accumulating near the top surfaces. Composite scaffolds were developed by suturing together two thin PGA disks after seeding to manipulate the initial cell distribution before bioreactor culture. The effect of medium flow direction in the bioreactors, including periodic reversal of medium flow, was also investigated. The quality of the tissue-engineered cartilage was assessed after 5 weeks of culture in terms of the tissue wet weight, glycosaminoglycan (GAG), total collagen and collagen type II contents, histological analysis of cell, GAG and collagen distributions, and immunohistochemical analysis of collagen types I and II. Significant enhancement in construct quality was achieved using composite scaffolds compared with single PGA disks. Operation of the bioreactors with periodic medium flow reversal instead of unidirectional flow yielded further improvements in tissue weight and GAG and collagen contents with the composite scaffolds. At harvest, the constructs contained GAG concentrations similar to those measured in ex vivo human adult articular cartilage; however, total collagen and collagen type II levels were substantially lower than those in adult tissue. This study demonstrates that the location of regions of high cell density in the scaffold coupled with application of dynamic bioreactor operating conditions has a significant influence on the quality of tissue-engineered cartilage.

摘要

从人胎儿骺软骨分离出的软骨细胞在混合条件下接种到直径15毫米的聚乙醇酸(PGA)支架中,并在循环柱生物反应器中培养以生成软骨构建体。接种后,厚(4.75毫米)和薄(2.15毫米)PGA盘内的细胞分布不均匀,较高的细胞密度聚集在顶面附近。通过在接种后将两个薄PGA盘缝合在一起开发复合支架,以在生物反应器培养前操纵初始细胞分布。还研究了生物反应器中培养基流动方向的影响,包括培养基流动的周期性逆转。在培养5周后,根据组织湿重、糖胺聚糖(GAG)、总胶原蛋白和II型胶原蛋白含量、细胞、GAG和胶原蛋白分布的组织学分析以及I型和II型胶原蛋白的免疫组织化学分析,评估组织工程软骨的质量。与单个PGA盘相比,使用复合支架可显著提高构建体质量。与单向流动相比,生物反应器采用周期性培养基流动逆转操作,可使复合支架的组织重量、GAG和胶原蛋白含量进一步提高。收获时,构建体中的GAG浓度与离体成人关节软骨中测得的浓度相似;然而,总胶原蛋白和II型胶原蛋白水平明显低于成人组织中的水平。这项研究表明,支架中高细胞密度区域的位置以及动态生物反应器操作条件的应用对组织工程软骨的质量有重大影响。

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