Verdonk P C M, Forsyth R G, Wang J, Almqvist K F, Verdonk R, Veys E M, Verbruggen G
Department of Rheumatology, Ghent University, Belgium.
Osteoarthritis Cartilage. 2005 Jul;13(7):548-60. doi: 10.1016/j.joca.2005.01.010.
Studies on the biology of the human meniscus cell are scarce. The objective of our studies was to assess survival/proliferation of human meniscus cells in different culture conditions and to characterize the extracellular matrix (ECM) produced by these cells in these artificial environments. The composition of this ECM offers a variable to define the distinct meniscus cell phenotype.
Human meniscus cells were isolated enzymatically from visually intact lateral and medial knee menisci. Cells were cultured in monolayer conditions or in alginate gel. The composition of the cell-associated matrix (CAM) accumulated by the isolated cells during culture was investigated and compared to the CAM of articular chondrocytes cultured in alginate using flow cytometry with fluorescein isothiocyanate-conjugated monoclonal antibodies against type I collagen, type II collagen and aggrecan. Additional cell membrane markers analysis was performed to further identify the different meniscus cell populations in the alginate culture conditions and meniscus tissue sections. Proliferation was analyzed using the Hoechst 33258 dye method. In some experiments, the effect of TGFbeta1 on some of these variables was investigated.
The CAM of monolayer cultured meniscus cells is composed of high amounts of type I and II collagen and low amounts of aggrecan. A major population of alginate cultured meniscus cells on the other hand synthesized a CAM containing high amounts of type I collagen, low amounts of type II collagen and high amounts of aggrecan. This population is CD44+CD105+CD34-CD31-. In contrast, a minor cell population in the alginate culture did not accumulate ECM and was mainly CD34+. The CAM of alginate cultured articular chondrocytes is composed of low amounts of type I collagen, high amounts of type II collagen and aggrecan. The expression of aggrecan and of type II collagen was increased by the addition of TGFbeta1 to the culture medium. The proliferation of meniscus cells is increased in the monolayer culture conditions. Cell numbers decrease slightly in the alginate culture, but can be increased after the addition of TGFbeta1.
These results demonstrate that the human meniscus is populated by different cell types which can be identified by a distinct CAM composition and membrane marker expression. Unlike the monolayer culture conditions, the alginate culture conditions appear to favor a more fibrochondrocyte-like cell accumulating a CAM resembling the native tissue composition. This CAM composition is distinctly different from the CAM composition of phenotypically stable articular cartilage chondrocytes cultured in the same alginate matrix.
关于人类半月板细胞生物学的研究较少。我们研究的目的是评估人类半月板细胞在不同培养条件下的存活/增殖情况,并对这些细胞在这些人工环境中产生的细胞外基质(ECM)进行表征。这种ECM的组成提供了一个变量来定义不同的半月板细胞表型。
从外观完整的膝关节外侧和内侧半月板中酶解分离出人类半月板细胞。细胞在单层条件下或藻酸盐凝胶中培养。使用异硫氰酸荧光素偶联的抗I型胶原、II型胶原和聚集蛋白聚糖的单克隆抗体,通过流式细胞术研究并比较分离细胞在培养过程中积累的细胞相关基质(CAM)与在藻酸盐中培养的关节软骨细胞的CAM。进行额外的细胞膜标志物分析以进一步鉴定藻酸盐培养条件下和半月板组织切片中的不同半月板细胞群体。使用Hoechst 33258染色法分析增殖情况。在一些实验中,研究了转化生长因子β1(TGFbeta1)对其中一些变量的影响。
单层培养的半月板细胞的CAM由大量的I型和II型胶原以及少量的聚集蛋白聚糖组成。另一方面,藻酸盐培养的半月板细胞的主要群体合成了一种CAM,其含有大量的I型胶原、少量的II型胶原和大量的聚集蛋白聚糖。该群体为CD44 + CD105 + CD34 - CD31 - 。相比之下,藻酸盐培养中的少数细胞群体不积累ECM,主要为CD34 + 。藻酸盐培养的关节软骨细胞的CAM由少量的I型胶原、大量的II型胶原和聚集蛋白聚糖组成。向培养基中添加TGFbeta1可增加聚集蛋白聚糖和II型胶原的表达。半月板细胞在单层培养条件下的增殖增加。在藻酸盐培养中细胞数量略有减少,但添加TGFbeta1后可增加。
这些结果表明,人类半月板由不同细胞类型组成,这些细胞类型可通过独特的CAM组成和膜标志物表达来鉴定。与单层培养条件不同,藻酸盐培养条件似乎有利于一种更类似纤维软骨细胞的细胞积累一种类似于天然组织组成的CAM。这种CAM组成与在相同藻酸盐基质中培养的表型稳定的关节软骨细胞的CAM组成明显不同。