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首页> 外文期刊>The International journal of oral & maxillofacial implants >Analysis of the attachment and differentiation of three-dimensional rotary wall vessel cultured human preosteoblasts on dental implant surfaces.
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Analysis of the attachment and differentiation of three-dimensional rotary wall vessel cultured human preosteoblasts on dental implant surfaces.

机译:牙种植体表面上三维旋转壁培养的人成骨细胞的附着和分化分析。

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PURPOSE: The purpose of this study was to determine whether osseous tissues engineered in three-dimensional (3D) environments preserved their mineralizing capacity and retained biologic characteristics when cultured on dental implant surfaces. MATERIALS AND METHODS: Human preosteoblast cells were cultured in both 3D rotary wall vessels and on 2D tissue culture plastic plates for 3 days. Aggregates from the 3D chambers and cells from the 2D plates were collected and transferred to commercially pure titanium disks with either 600-grit polished or sandblasted surfaces. These were cultured for an additional 7 days. The aggregates and cells from the disks were collected and prepared for scanning electron microscopy for microscopic evaluation and atomic adsorption assays for mineral content analysis. Additionally, staining with Alizarin red S was performed to compare the mineralization amount and pattern in each group. Polymerase chain reaction analysis was performed to evaluate expression of osteogenic genes, including Runx2, FAK, bone morphogenetic protein 2, and osteocalcin. RESULTS: Cells from 3D rotary wall vessel cultures attached to implant surfaces and presented cell attachment and growth patterns similar to those of standard 2D cultured cells, showing evidence of radial and random growth, yet they formed multiple focal niches on implant surfaces out of which cells proliferated. The 3D cultured cells and osseous tissues retained higher amounts of mineral formed during the initial culture and showed a higher tendency toward mineralization on implant surfaces compared to standard cultured cells. The 3D cultured cells and osseous tissues on implant surfaces at 1 week showed higher key gene protein expression. RNA expression at 1 week was equivalent to that of standard cultured cells. CONCLUSION: Culture of human osteogenic cells and tissues in 3D rotary wall vessels may expedite the osseointegration process on dental implant surfaces, thus reducing the overall treatment time.
机译:目的:本研究的目的是确定在三维(3D)环境中工程化的骨组织在牙种植体表面培养时是否保留其矿化能力和生物特性。材料与方法:将人类成骨细胞在3D旋转壁容器中和2D组织培养塑料板上培养3天。收集来自3D室的聚集体和来自2D板的细胞,并将其转移到具有600粒度抛光或喷砂表面的商业纯钛圆盘中。将它们再培养7天。从圆盘上收集聚集物和细胞,并准备用于扫描电子显微镜进行显微镜评估和原子吸附测定以进行矿物含量分析。另外,用茜素红S染色以比较每组中的矿化量和图案。进行聚合酶链反应分析以评估成骨基因的表达,包括Runx2,FAK,骨形态发生蛋白2和骨钙素。结果:来自3D旋转壁血管培养物的细胞附着在植入物表面上,并呈现出与标准2D培养细胞相似的细胞附着和生长方式,显示出放射状和随机生长的迹象,但它们在植入物表面上形成了多个局部ni激增。与标准培养细胞相比,3D培养细胞和骨组织保留了初始培养过程中形成的大量矿物质,并在植入物表面显示出更高的矿化趋势。 1周时植入物表面的3D培养细胞和骨组织显示出较高的关键基因蛋白表达。 1周时的RNA表达与标准培养细胞相同。结论:在3D旋转壁血管中培养人成骨细胞和组织可加快牙科植入物表面的骨整合过程,从而减少了整体治疗时间。

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