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Effect of rapidly resorbable bone substitute materials on the temporal expression of the osteoblastic phenotype in vitro

机译:快速吸收性骨替代材料对体外成骨细胞表型时间表达的影响

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Ideally, bioactive ceramics for use in alveolar ridge augmentation should possess the ability to activate bone formation and, thus, cause the differentiation of osteoprogenitor cells into osteoblasts at their surfaces. Therefore, in order to evaluate the osteogenic potential of novel bone substitute materials, it is important to examine their effect on osteoblastic differentiation. This study examines the effect of rapidly resorbable calcium-alkali-orthophosphates on osteoblastic phenotype expression and compares this behavior to that of beta-tricalcium phosphate (TCP) and bioactive glass 45S5. Test materials were three materials (denominated GB14, GB9, GB9/25) with a crystalline phase Ca_2KNa(PO_4)_2 and with a small amorphous portion containing either magnesium potassium phosphate (GB14) or silica phosphate (GB9 and GB9/25, which also contains Ca_2P_2O_7); and a material with a novel crystalline phase Ca_(10)[K/Na](P0_4)_7 (material denominated 352i). SaOS-2 human bone cells were grown on the substrata for 3, 7, 14, and 21 days, counted, and probed for an array of osteogenic markers. GB9 had the greatest stimulatory effect on osteoblastic proliferation and differentiation, suggesting that this material possesses the highest potency to enhance osteogenesis. GB14 and 352i supported osteoblast differentiation to the same or a higher degree than TCP, whereas, similar to bioactive glass 45S5, GB9/25 displayed a greater stimulatory effect on osteoblastic phenotype expression, indicating that GB9/25 is also an excellent material for promoting osteogenesis.
机译:理想地,用于牙槽增高的生物活性陶瓷应具有激活骨形成的能力,从而在其表面使成骨祖细胞分化为成骨细胞。因此,为了评估新型骨替代材料的成骨潜力,重要的是研究它们对成骨细胞分化的影响。这项研究检查了可快速吸收的钙-碱性-正磷酸钙对成骨细胞表型表达的影响,并将这种行为与β-磷酸三钙(TCP)和生物活性玻璃45S5的行为进行了比较。测试材料为三种材料(命名为GB14,GB9,GB9 / 25),其结晶相为Ca_2KNa(PO_4)_2,并且具有少量非晶态部分,其中包含磷酸镁钾(GB14)或磷酸硅(GB9和GB9 / 25),包含Ca_2P_2O_7);以及具有新颖晶相Ca_(10)[K / Na](P0_4)_7的材料(材料命名为352i)。 SaOS-2人骨细胞在基质上生长3、7、14和21天,计数并探查一系列成骨标记。 GB9对成骨细胞的增殖和分化具有最大的刺激作用,表明该材料具有增强成骨作用的最高效力。 GB14和352i支持与TCP相同或更高程度的成骨细胞分化,而与生物活性玻璃45S5相似,GB9 / 25对成骨细胞表型表达表现出更大的刺激作用,表明GB9 / 25也是促进成骨作用的极佳材料。 。

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