Bundy K J, Harris L G, Rahn B A, Richards R G
AO Research Institute, Clavadelerstrasse, Davos, CH 7270, Switzerland.
Cell Biol Int. 2001;25(4):289-307. doi: 10.1006/cbir.2000.0648.
Fibroblast and Staphylococcus aureus detachment strength from orthopaedic alloys and a tissue culture plastic (Thermanox) have been investigated with jet impingement. For S. aureus, unlike fibroblasts, detachment is caused more by pressure than shear. For these biomaterials, detachment strength is much higher for S. aureus than fibroblasts. Comparing materials under equivalent flow conditions, S. aureus attach to stainless steel and titanium with equal strength and more strongly than to Thermanox. For fibroblasts, detachment strength from all materials was similar. Fibroblast detachment strength from these biomaterials substantially decreases with time at equal flow rates and increases with flow rate at equal exposure times. Detachment strength is very similar for 3T3 and L929 fibroblasts on Thermanox for equivalent flow rate/time combinations, though enhanced adhesion of 3T3 cells was often noted for metals. Time effects are less evident for S. aureus. S. aureus adhesion to metals is more affected by flow rate than fibroblast adhesion.
通过喷射冲击研究了成纤维细胞和金黄色葡萄球菌从骨科合金及一种组织培养塑料(Thermanox)上的脱离强度。对于金黄色葡萄球菌,与成纤维细胞不同,其脱离更多是由压力而非剪切力引起的。对于这些生物材料,金黄色葡萄球菌的脱离强度比成纤维细胞高得多。在等效流动条件下比较不同材料时,金黄色葡萄球菌附着于不锈钢和钛的强度相同,且比附着于Thermanox更强。对于成纤维细胞,从所有材料上的脱离强度相似。在相同流速下,成纤维细胞从这些生物材料上的脱离强度会随时间大幅降低,而在相同暴露时间下会随流速增加。对于等效流速/时间组合,3T3和成纤维细胞L929在Thermanox上的脱离强度非常相似,不过对于金属材料,常可观察到3T3细胞的黏附增强。时间对金黄色葡萄球菌的影响不太明显。与成纤维细胞的黏附相比,流速对金黄色葡萄球菌与金属的黏附影响更大。