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Biomaterials Current Strategies and Novel Nano-Technological Approaches for Periodontal Regeneration

机译:生物材料当前策略和牙周再生的新型纳米技术方法

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摘要

Periodontal diseases involve injuries to the supporting structures of the tooth and, if left untreated, can lead to the loss of the tooth. Regenerative periodontal therapies aim, ideally, at healing all the damaged periodontal tissues and represent a significant clinical and societal challenge for the current ageing population. This review provides a picture of the currently-used biomaterials for periodontal regeneration, including natural and synthetic polymers, bioceramics (e.g., calcium phosphates and bioactive glasses), and composites. Bioactive materials aim at promoting the regeneration of new healthy tissue. Polymers are often used as barrier materials in guided tissue regeneration strategies and are suitable both to exclude epithelial down-growth and to allow periodontal ligament and alveolar bone cells to repopulate the defect. The problems related to the barrier postoperative collapse can be solved by using a combination of polymeric membranes and grafting materials. Advantages and drawbacks associated with the incorporation of growth factors and nanomaterials in periodontal scaffolds are also discussed, along with the development of multifunctional and multilayer implants. Tissue-engineering strategies based on functionally-graded scaffolds are expected to play an ever-increasing role in the management of periodontal defects.
机译:牙周疾病涉及牙齿支撑结构的损伤,如果不及时治疗,可能导致牙齿脱落。理想的是,再生牙周疗法旨在治愈所有受损的牙周组织,并代表了当前人口老龄化的重大临床和社会挑战。这篇评论提供了目前用于牙周再生的生物材料的图片,包括天然和合成聚合物,生物陶瓷(例如磷酸钙和生物活性玻璃)以及复合材料。生物活性材料旨在促进新的健康组织的再生。聚合物通常在引导的组织再生策略中用作屏障材料,并且既可以排除上皮的下垂,又可以使牙周膜和牙槽骨细胞重新填充缺损。可以通过结合使用聚合物膜和移植材料来解决与屏障术后塌陷有关的问题。还讨论了与在牙周支架中掺入生长因子和纳米材料相关的优缺点,以及多功能和多层植入物的开发。预期基于功能梯度支架的组织工程策略在牙周缺损管理中将发挥越来越重要的作用。

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