An Advanced Fiber-Reinforced Composite Solution for Gingival Inflammation and Bone Loss Related to Restorative Crowns.

EC dental science Pub Date : 2020-02-01 Epub Date: 2020-01-29
Richard C Petersen, Perng-Ru Liu, Michael S Reddy
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Abstract

Soaring gold prices have created an almost impossible void in the Dental Materials supply reserves for affordable patient posterior crowns. Fortunately, aerotech fiber-reinforced composite (FRC) materials in use for many diverse structural applications can be developed for dentistry to replace gold with computer-assisted design/computer-assisted manufacture (CAD/CAM) technology. Current dental ceramics or high-strength oxide ceramics like alumina and zirconia available for CAD/CAM have extremely poor fracture-toughness properties and can propagate microscopic cracks rapidly to sudden adverse brittle failure. As a highly promising alternative, exceptional FRC fracture toughness properties counteract brittle failure with high-strength fibers that act as major barriers to crack propagation. In addition, excellent rapid FRC CAD/CAM machining can offer one-patient appointments for single crowns. FRCs have high-strength fibers coupled into a polymer matrix with the ability to form strong covalent bonds with resin adhesives whereas ceramics do not bond well and oxide ceramics have non-reactive inert surfaces making resin bonding extremely difficult. Prominent adhesive free-radical covalent bonding by FRCs then provides a great opportunity to achieve a crown marginal reline directly on the patienťs clinical tooth for possible near zero-gap defect tolerances. To place crown gingival marginal defects in proper perspective, gaps between the tooth and crown expose luting cements that can wash out and provide space for microbial plaque growth. Bacterial toxins released from a crown-tooth interface can subsequently produce secondary decay, gingival inflammation and eventually under severe plaque environments breed periodontal disease with bone loss.

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一种先进的纤维增强复合材料解决方案,用于治疗与修复冠相关的牙龈炎症和骨质流失。
黄金价格的飙升,使牙科材料供应储备出现了几乎不可能填补的空白,无法为患者提供价格合理的后牙冠。幸运的是,利用计算机辅助设计/计算机辅助制造(CAD/CAM)技术,可以开发出用于多种结构应用的航空技术纤维增强复合材料(FRC),用于牙科替代黄金。目前可用于 CAD/CAM 的牙科陶瓷或高强度氧化物陶瓷(如氧化铝和氧化锆)的断裂韧性极差,会迅速产生微小裂纹,导致脆性失效。作为一种非常有前途的替代方案,FRC 具有优异的断裂韧性,可通过高强度纤维抵消脆性破坏,成为裂纹扩展的主要障碍。此外,出色的快速 FRC CAD/CAM 加工技术还可提供单个牙冠的预约服务。FRC 将高强度纤维与聚合物基质结合在一起,能够与树脂粘合剂形成牢固的共价键,而陶瓷则不能很好地粘合,氧化物陶瓷具有非反应性的惰性表面,使树脂粘合极为困难。因此,FRC 的粘接剂自由基共价结合能力很强,这就为直接在患者的临床牙齿上实现牙冠边缘重衬提供了一个很好的机会,从而可能实现接近零间隙的缺损公差。为了正确看待牙冠龈缘缺损,牙齿和牙冠之间的间隙会暴露出粘结剂,这些粘结剂会被冲掉,为微生物菌斑的生长提供空间。牙冠-牙齿界面释放出的细菌毒素会继发蛀牙、牙龈炎症,最终在严重的牙菌斑环境下导致牙周病和骨质流失。
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An Advanced Fiber-Reinforced Composite Solution for Gingival Inflammation and Bone Loss Related to Restorative Crowns. Fiber-Reinforced Composites: A Breakthrough in Practical Clinical Applications with Advanced Wear Resistance for Dental Materials. Important Dental Fiber-Reinforced Composite Molding Compound Breakthroughs.
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