Vogel T, Blake D A, Whikehart D R, Guo N H, Zabrenetzky V S, Roberts D D
Laboratory of Pathology, National Cancer Institute, National Institutes of Health, Bethesda, Maryland 20892.
J Cell Physiol. 1993 Nov;157(2):359-66. doi: 10.1002/jcp.1041570220.
Bovine corneal endothelial cells showed a strong migratory response to specific simple sugars (D-glucose and sucrose, but not L-glucose, sorbitol, lactose, or D-galactose) at concentrations above 10 mM. Checkerboard analysis of the migratory responses in modified Boyden chambers indicated both chemotactic and chemokinetic effects. Serum starvation of the cultures increased the chemotaxis towards D-glucose and 2-deoxy-D-glucose, but not towards sucrose. Migration to sucrose and glucose was inhibited by chelation of extracellular calcium or by inhibition of Na+, K+ ATPase with ouabain. To date, this migratory response has been found only in corneal endothelial cells. Neither human melanoma cells, human breast carcinoma cells, bovine aortic endothelial cells, nor bovine microvascular endothelial cells migrated towards simple sugars, although all cell types migrated toward fibronectin in chemotaxis assays. After 16-19 passages in culture, bovine corneal endothelial cells retained their ability to migrate towards fibronectin, but lost their ability to migrate towards sugars. This loss of migratory response was accompanied by a sevenfold decrease in Na+, K+ ATPase activity. Although loss of Na+, K+ ATPase activity accompanied the loss of migratory response, pretreatment of cell cultures with 25 mM glucose did not stimulate, but rather lowered Na+, K+ ATPase activity in low or high passage cultures.
牛角膜内皮细胞在浓度高于10 mM时,对特定的单糖(D-葡萄糖和蔗糖,但不是L-葡萄糖、山梨醇、乳糖或D-半乳糖)表现出强烈的迁移反应。在改良的Boyden小室中对迁移反应进行棋盘分析表明存在趋化和化学动力学效应。对培养物进行血清饥饿处理会增加对D-葡萄糖和2-脱氧-D-葡萄糖的趋化性,但对蔗糖没有影响。用螯合剂螯合细胞外钙或用哇巴因抑制Na+、K+ ATP酶可抑制向蔗糖和葡萄糖的迁移。迄今为止,这种迁移反应仅在角膜内皮细胞中发现。人黑色素瘤细胞、人乳腺癌细胞、牛主动脉内皮细胞和牛微血管内皮细胞均不会向单糖迁移,尽管在趋化性测定中所有细胞类型都会向纤连蛋白迁移。在培养16至19代后,牛角膜内皮细胞保留了向纤连蛋白迁移的能力,但失去了向糖类迁移的能力。这种迁移反应的丧失伴随着Na+、K+ ATP酶活性下降了七倍。尽管Na+、K+ ATP酶活性的丧失与迁移反应的丧失同时发生,但用25 mM葡萄糖预处理细胞培养物并不会刺激低代或高代培养物中的Na+、K+ ATP酶活性,反而会降低其活性。