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Polymeric dental composites based on remineralizing amorphous calcium phosphate fillers

机译:基于矿化无定形磷酸钙填料的聚合物牙科复合材料

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摘要

For over two decades we have systematically explored structure-composition-property relationships of amorphous calcium phosphate (ACP)-based polymeric dental composites. The appeal of these bioactive materials stems from their intrinsic ability to prevent demineralization and/or restore defective tooth structures via sustained release of remineralizing calcium and phosphate ions. Due to the compositional similarity of the ACP to biological tooth mineral, ACP-based composites should exhibit excellent biocompatibility. Research described in this article has already yielded remineralizing sealants and orthodontic adhesives as well as a prototype root canal sealer. Our work has also contributed to a better understanding on how polymer matrix structure and filler/matrix interactions affect the critical properties of these polymeric composites and their overall performance. The addition of antimicrobial compounds to the formulation of ACP composites could increase their medical and dental regenerative treatment applications, thereby benefiting an even greater number of patients.
机译:在过去的二十多年中,我们系统地研究了基于无定形磷酸钙(ACP)的聚合物牙科复合材料的结构-成分-性能关系。这些生物活性材料的吸引力在于它们通过持续释放矿化的钙离子和磷酸根离子来防止脱矿和/或恢复有缺陷的牙齿结构的内在能力。由于ACP与生物牙齿矿物的成分相似性,基于ACP的复合材料应表现出出色的生物相容性。本文所述的研究已经产生了再矿化密封剂和正畸粘合剂以及原型根管封闭剂。我们的工作还有助于更好地了解聚合物基质结构和填料/基质相互作用如何影响这些聚合物复合材料的关键性能及其整体性能。在ACP复合材料的配方中添加抗微生物化合物可以增加其医疗和牙科再生治疗的应用,从而使更多的患者受益。

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