Reilly Gwendolen C, Haut Traci R, Yellowley Clare E, Donahue Henry J, Jacobs Christopher R
Musculoskeletal Research Laboratory, Department of Orthopaedics and Rehabilitation, The Pennsylvania State University College of Medicine, Hershey, PA 17033, USA.
Biorheology. 2003;40(6):591-603.
It has been hypothesized that bone cells have a hyaluronic acid (HA) rich glycocalyx (cell coat or pericellular matrix) and that this contributes to bone cell mechanotransduction via fluid flow. The glycocalyx of bone cells of the MC3T3-E1 osteoblastic cell line and the MLO-Y4 osteocytic cell line were characterized. Alcian blue staining and lectin binding experiments suggested that these cells have a glycocalyx rich in HA. Sulphated proteoglycans were not detected. Staining with hyaluronic acid binding protein and degradation by hyaluronidase confirmed that HA was a major component of the glycocalyx. We subjected cells, with and without hyaluronidase treatment, to oscillating fluid flow under standardized in vitro conditions. There was no effect of glycocalyx degradation on the intracellular calcium signal, in either cell type, in terms of the percentage of cells responding (40-80%) or the magnitude of the response (2-5 times baseline). However, a 4-fold fluid flow induced increase in PGE2 was eliminated by hyaluronidase pre-treatment in MLO-Y4 cells. We conclude that under these conditions the calcium and PGE2 responses occur via different pathways. An intact glycocalyx is not necessary in order to initiate a calcium signal in response to oscillating fluid flow. However, in osteocyte-like cells the PGE2 pathway is more dependent on mechanical signals transmitted through the glycocalyx.
据推测,骨细胞具有富含透明质酸(HA)的糖萼(细胞被膜或细胞周基质),并且这通过流体流动有助于骨细胞的机械转导。对MC3T3-E1成骨细胞系和MLO-Y4骨细胞系的骨细胞糖萼进行了表征。阿尔辛蓝染色和凝集素结合实验表明这些细胞具有富含HA的糖萼。未检测到硫酸化蛋白聚糖。用透明质酸结合蛋白染色和用透明质酸酶降解证实HA是糖萼的主要成分。我们在标准化的体外条件下,对经透明质酸酶处理和未处理的细胞施加振荡流体流动。就响应细胞的百分比(40-80%)或响应幅度(基线的2-5倍)而言,糖萼降解对两种细胞类型的细胞内钙信号均无影响。然而,在MLO-Y4细胞中,透明质酸酶预处理消除了4倍流体流动诱导的PGE2增加。我们得出结论,在这些条件下,钙和PGE2反应通过不同途径发生。响应振荡流体流动引发钙信号并不需要完整的糖萼。然而,在类骨细胞中,PGE2途径更依赖于通过糖萼传递的机械信号。