Fröhlich M, Malicev E, Gorensek M, Knezević M, Kregar Velikonja N
Educell d.o.o., Letaliska cesta 33, SI-1000 Ljubljana, Slovenia.
Cell Biol Int. 2007 Jun;31(6):620-5. doi: 10.1016/j.cellbi.2006.12.003. Epub 2006 Dec 30.
Auricular cartilage is an attractive potential source of cells for many tissue engineering applications. However, there are several requirements that have to be fulfilled in order to develop a suitable tissue engineered implant. Animal experiments serve as important tools for validating novel concepts of cartilage regeneration; therefore rabbit auricular chondrocytes were studied. Various parameters including isolation procedures, passage number, rate of proliferation and gene expression profile for major extracellular matrix components were evaluated in order to assess the potential use of elastic chondrocytes for tissue engineering. Chondrocytes were isolated from rabbit ear cartilage and grown in monolayer cultures over four passages. Yields of harvested cells and proliferation were analysed from the digestion step to the fourth passage, and changes in phenotype were monitored. The proliferation capacity of cell cultures decreased during cultivation and was accompanied by enlargement of cells, this phenomenon being especially evident in the third and fourth passages. The expression of cartilage specific genes for collagen type II, aggrecan and cartilage non-specific collagen type I was determined. The mRNA levels for all three genes were obviously lower in the primo culture than immediately after isolation. During subsequent cultivation the expression of collagen type II decreased further, while there were only slight changes in expression of aggrecan and collagen type I. This study provides a valuable basis for testing of different tissue engineering applications in rabbit model, where auricular chondrocytes are considered as cell source.
耳软骨是许多组织工程应用中极具吸引力的潜在细胞来源。然而,为了开发合适的组织工程植入物,必须满足几个要求。动物实验是验证软骨再生新概念的重要工具;因此,对兔耳软骨细胞进行了研究。评估了包括分离程序、传代次数、增殖率和主要细胞外基质成分的基因表达谱等各种参数,以评估弹性软骨细胞在组织工程中的潜在用途。从兔耳软骨中分离软骨细胞,并在单层培养中传代培养四代。从消化步骤到第四代分析收获细胞的产量和增殖情况,并监测表型变化。细胞培养物的增殖能力在培养过程中下降,并伴随着细胞增大,这种现象在第三代和第四代中尤为明显。测定了软骨特异性基因II型胶原蛋白、聚集蛋白聚糖和软骨非特异性I型胶原蛋白的表达。在原代培养中,这三个基因的mRNA水平明显低于刚分离后。在随后的培养过程中,II型胶原蛋白的表达进一步下降,而聚集蛋白聚糖和I型胶原蛋白的表达仅有轻微变化。本研究为在兔模型中测试不同的组织工程应用提供了有价值的基础,其中耳软骨细胞被视为细胞来源。