首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effects of the water-holding capability of polyvinyl formal sponges on osteogenic ability in in vivo experiments
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Effects of the water-holding capability of polyvinyl formal sponges on osteogenic ability in in vivo experiments

机译:聚乙烯正式海绵水固定能力对体内实验中骨质发生能力的影响

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In this study, dextran-coated polyvinyl formal (PVF) sponges with high water-holding capability were developed to increase the osteogenic response in the PVF sponge. The study aimed to estimate the effect of the increased water-holding capability of the sponges on osteogenic capacity at a bone defect site in the rabbit femur epiphysis. Bone formation was evaluated using radiography, microcomputed tomography (CT), and histological analysis at 2, 4, and 6 weeks after implantation. As shown by radiography and micro-CT findings, the dextran-coated PVF sponge without water-holding capability showed little bone formation at all evaluated time points. However, the dextran-coated PVF sponge with high water-holding capability showed increasing bone formation around the implant at 4 and 6 weeks after implantation. Furthermore, as shown by micro-CT quantitative analysis, the grafted PVF sponge with high water-holding capability showed significantly greater values for percentage of bone volume per total volume and mean bone mineral density compared with the grafted PVF sponge without water-holding capability at 4 and 6 weeks after implantation. These results suggest that the dextran-coated PVF sponge with high water-holding capability promoted osteogenesis in vivo. The PVF sponge might be a new biomaterial to be used as a fill material for bone defects. (c) 2014 Wiley Periodicals, Inc. J Biomed Mater Res Part B: Appl Biomater, 103B: 188-194, 2015.
机译:在该研究中,开发出具有高水持能力的葡聚糖涂覆的聚乙烯炔(PVF)海绵,以增加PVF海绵中的成骨响应。该研究旨在估算海绵水持续水的施加能力提高对兔股骨骨骺骨缺损部位的骨质骨质容量。使用射线照相,微型断层扫描(CT)和植入后2,4和6周的组织学分析评估骨形成。如射线照相和微型CT结果所示,葡聚糖涂覆的PVF海绵没有防水能力在所有评估时间点都显示出很少的骨形成。然而,具有高水保持能力的葡聚糖涂覆的PVF海绵在植入后4和6周的植入物周围增加骨形成。此外,如通过微型CT定量分析所示,具有高水保持性能的接枝PVF海绵显示出较大的骨骼体积的百分比值,而平均骨密度与接枝的PVF海绵相比,没有防水性能植入后4和6周。这些结果表明,具有高水控能力的葡聚糖涂覆的PVF海绵促进体内骨质发生。 PVF海绵可能是一种新的生物材料,用作填充材料用于骨缺损。 (c)2014年Wiley期刊,Inc。J生物保解率B部分B:Appl Biomater,103B:188-194,2015。

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