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首页> 外文期刊>Bioactive Materials >Preservation of alveolar ridge height through mechanical memory: A novel dental implant design
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Preservation of alveolar ridge height through mechanical memory: A novel dental implant design

机译:通过机械记忆保存肺泡脊高度:一种新型牙科植入物设计

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Irreversible marginal bone loss can hinder recovery around dental implants. Insufficient alveolar osteogenesis and stress concentration during chewing contribute to marginal bone resorption and can result in implant failure. A biomaterial with a micropore-channel structure was developed using 3D printing technology. This design facilitated bony ingrowth and provided similar mechanical stimulation at the implant neck during mastication to a natural tooth. The micropore channels provided a guiding structure for bone mesenchymal stem cell proliferation and differentiation without the need for growth factors. Specifically, this was achieved through mechanical transduction by F-actin remodeling and the activation of Yes-associated protein (YAP). The implants were verified in a canine dental implant surgery model, which demonstrated the promising use of biomaterial-based dental implants in future clinical applications.
机译:不可逆的边际骨质损失可以妨碍牙科植入物的恢复。 咀嚼过程中的肺泡成骨和应力浓度不足导致边际骨吸收,并且可以导致植入物失效。 使用3D打印技术开发了具有微孔通道结构的生物材料。 这种设计促进了骨骼内骨,并在咀嚼过程中为植入物颈部提供了类似的机械刺激。 微孔通道提供了用于骨间充质干细胞增殖和分化的引导结构,而无需生长因子。 具体地,这是通过F-Actin重塑的机械转导和对Yes相关蛋白(YAP)的活化来实现的。 植入物在犬牙科植入手术模型中验证,该模型展示了未来临床应用中的生物材料牙科植入物的有望使用。

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