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Osteogenic gene expression of canine bone marrow stromal cell and bacterial adhesion on titanium with different nanotubes

机译:不同纳米管对犬骨髓基质细胞成骨基因表达及细菌粘附的影响

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Bacterial infection and osseointegration of implantbiomaterials all play important roles in the success of an orthopedic prosthesis or a dental-implant. In this work, we evaluated the osteogenic gene expression of canine bone marrow stromal cells (CBMSCs) and the adhesion of Staphylococcus aureus (ATCC 12598) on different diameter TiO2 nanotube layers. The CBMSCs cultured on 30 and 70 nm nanotubes displayed polygon shape, but obviously elongated when the diameter of nanotubes turned to 120 nm. A significant increase in CBMSCs proliferation by as much as about ~300%, and osteogenic gene (RUNX-2, OPN, COL-1, and OCN) expression were observed on the 120 nm diameter nanotubes when compared to the smooth Ti. However, the adhesion of bacteria also increased with an increased tube diameter and reached highest value on 120 nm nanotubes after 4 h of incubation. ~300-400% increase in bacterial attached to 120 nm nanotubes in contract to the smooth Ti. These data suggested reducing bacteria colonization should be considered when larger diameter nanotubes with better osteogenic property would be used as orthopedic implants or dental implants.
机译:植入物生物材料的细菌感染和骨整合在整形外科假体或牙科植入物的成功中均起着重要作用。在这项工作中,我们评估了犬骨髓基质细胞(CBMSC)的成骨基因表达和金黄色葡萄球菌(ATCC 12598)在不同直径的TiO2纳米管层上的粘附性。在30和70 nm的纳米管上培养的CBMSC呈现多边形形状,但是当纳米管的直径变为120 nm时,CBMSC明显伸长。与光滑的Ti相比,在直径为120 nm的纳米管上观察到CBMSC增殖显着增加了约300%,并且观察到成骨基因(RUNX-2,OPN,COL-1和OCN)的表达。然而,细菌的粘附力也随着管直径的增加而增加,并在孵育4小时后在120 nm纳米管上达到最高值。附着在120 nm纳米管上的细菌与光滑Ti的结合量增加了约300-400%。这些数据表明,当将较大直径的具有更好成骨性的纳米管用作整形外科植入物或牙科植入物时,应考虑减少细菌定植。

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