Bassleer C, Gysen P, Bassleer R, Franchimont P
Laboratory of Radioimmunology, University of Liege, Belgium.
Biochem Pharmacol. 1988 May 15;37(10):1939-45. doi: 10.1016/0006-2952(88)90540-0.
Human chondrocytes from the pelvic joint were cultivated in suspension; under these conditions, after a few days, cells aggregated. These chondrocytes were morphologically differentiated (round shape, situated inside cavities and surrounded by a matrix synthesized during cultivation) and biosynthetically differentiated (synthesis of type II collagen and cartilage proteoglycans (PG) (Bassleer et al. In vitro 22, 115-120, 1986). In this work, we present the metabolic and cellular effects of a peptidic-glycosaminoglycan (P-GAG) complex isolated from calf cartilage and bone marrow. We analyzed the effects of P-GAG on DNA synthesis (appreciated by 3H-thymidine incorporation into DNA), on type II collagen and on PG synthesis analyzed by specific radioimmunoassays. According to its final concentration in culture medium, P-GAG was able to stimulate proliferation or to favor the production of specific components of cartilage matrix, type II collagen and PG.
从骨盆关节获取的人软骨细胞进行悬浮培养;在这些条件下,几天后细胞聚集。这些软骨细胞在形态上发生分化(呈圆形,位于腔隙内并被培养过程中合成的基质包围),在生物合成方面也发生分化(合成II型胶原蛋白和软骨蛋白聚糖(PG)(Bassleer等人,《In vitro》22, 115 - 120, 1986)。在这项工作中,我们展示了从小牛软骨和骨髓中分离出的肽聚糖氨基聚糖(P - GAG)复合物的代谢和细胞效应。我们分析了P - GAG对DNA合成(通过将³H - 胸腺嘧啶掺入DNA来评估)以及对通过特异性放射免疫测定分析的II型胶原蛋白和PG合成的影响。根据其在培养基中的最终浓度,P - GAG能够刺激增殖或促进软骨基质特异性成分II型胶原蛋白和PG的产生。