Saini Sunil, Wick Timothy M
School of Chemical and Biomolecular Engineering and Parker H. Petit Institute for Bioengineering and Bioscience, Georgia Institute of Technology, Atlanta, Georgia 30332-0100, USA.
Tissue Eng. 2004 May-Jun;10(5-6):825-32. doi: 10.1089/1076327041348545.
Cartilage is exposed to low oxygen tension in vivo, suggesting culture in a low-oxygen environment as a strategy to enhance matrix deposition in tissue-engineered cartilage in vitro. To assess the effects of oxygen tension on cartilage matrix accumulation, porous polylactic acid constructs were dynamically seeded in a concentric cylinder bioreactor with bovine chondrocytes and cultured for 3 weeks at either 20 or 5% oxygen tension. Robust chondrocyte proliferation and matrix deposition were achieved. After 22 days in culture, constructs from bioreactors operated at either 20 or 5% oxygen saturation had similar chondrocyte densities and collagen content. During the first 12 days of culture, the matrix glycosaminoglycan (GAG) deposition rate was 19.5 x 10(-9) mg/cell per day at 5% oxygen tension and 65% greater than the matrix GAG deposition rate at 20% oxygen tension. After 22 days of bioreactor culture, constructs at 5% oxygen contained 4.5 +/- 0.3 mg of GAG per construct, nearly double the 2.5 +/- 0.2 mg of GAG per construct at 20% oxygen tension. These data demonstrate that culture in bioreactors at low oxygen tension favors the production and retention of GAG within cartilage matrix without adversely affecting chondrocyte proliferation or collagen deposition. Bioreactor studies such as these can identify conditions that enhance matrix accumulation and construct development for cartilage tissue engineering.
软骨在体内处于低氧张力环境,这表明在低氧环境中培养是一种增强体外组织工程软骨中基质沉积的策略。为了评估氧张力对软骨基质积累的影响,将多孔聚乳酸构建体与牛软骨细胞动态接种到同心圆柱生物反应器中,并在20%或5%的氧张力下培养3周。实现了强劲的软骨细胞增殖和基质沉积。培养22天后,在20%或5%氧饱和度下运行的生物反应器中的构建体具有相似的软骨细胞密度和胶原蛋白含量。在培养的前12天,在5%氧张力下基质糖胺聚糖(GAG)的沉积速率为每天19.5×10⁻⁹毫克/细胞,比在20%氧张力下的基质GAG沉积速率高65%。生物反应器培养22天后,5%氧张力下的构建体每个构建体含有4.5±0.3毫克GAG,几乎是20%氧张力下每个构建体2.5±0.2毫克GAG的两倍。这些数据表明,在低氧张力的生物反应器中培养有利于软骨基质中GAG的产生和保留,而不会对软骨细胞增殖或胶原蛋白沉积产生不利影响。这样的生物反应器研究可以确定增强软骨组织工程中基质积累和构建体发育的条件。