Wu Min-Hsien, Urban Jill P G, Cui Zhan Feng, Cui Zheng, Xu Xia
Department of Engineering Science, University of Oxford, Oxford OX1 3PJ, UK.
Biotechnol Prog. 2007 Mar-Apr;23(2):430-4. doi: 10.1021/bp060024v. Epub 2007 Feb 8.
In cartilage tissue engineering, the determination of the most appropriate cell/tissue culture conditions to maximize extracellular matrix synthesis is of major importance. The extracellular pH plays an important role in affecting energy metabolism and matrix synthesis by chondrocytes. In this study, chondrocytes were isolated from bovine articular cartilage, embedded in agarose gel, and cultured at varied pH levels (7.3-6.6). Rate of lactate production, total glycosaminoglycan (GAG) and collagen synthesis, as well as total cell numbers and cell viability were evaluated after culturing for up to 7 days. The results showed the rate of lactic acid production over the 7-day culture was significantly affected by extracellular pH; acidic pH markedly inhibited the production of lactate. Also, a biphasic response to extracellular pH in regard to total GAG synthesis was observed; the maximum synthesis was seen at pH 7.2. However, the collagen synthesis was not pH-dependent within the pH range explored. In addition, within the conditions studied, total cell numbers and cell viability were not significantly affected by extracellular pH. In conclusion, even minor changes in extracellular pH could markedly affect the metabolic activities and biosynthetic ability of chondrocytes. Consequently, the control of extracellular pH condition is crucially important for successful cartilage tissue engineering and for the study of chondrocyte physiology and functions.
在软骨组织工程中,确定最合适的细胞/组织培养条件以最大化细胞外基质合成至关重要。细胞外pH值在影响软骨细胞的能量代谢和基质合成方面起着重要作用。在本研究中,从牛关节软骨中分离出软骨细胞,包埋于琼脂糖凝胶中,并在不同pH水平(7.3 - 6.6)下培养。培养长达7天后,评估乳酸产生率、总糖胺聚糖(GAG)和胶原蛋白合成,以及总细胞数和细胞活力。结果显示,在7天的培养过程中,乳酸产生率受细胞外pH值显著影响;酸性pH值明显抑制乳酸产生。此外,观察到总GAG合成对细胞外pH值呈双相反应;在pH 7.2时合成量最大。然而,在所研究的pH范围内,胶原蛋白合成不依赖于pH值。此外,在所研究的条件下,总细胞数和细胞活力不受细胞外pH值的显著影响。总之,即使细胞外pH值的微小变化也可能显著影响软骨细胞的代谢活动和生物合成能力。因此,控制细胞外pH条件对于成功的软骨组织工程以及软骨细胞生理学和功能研究至关重要。