a State Key Laboratory of Military Stomatology, Department of Prosthetics , School of Stomatology, The Fourth Military Medical University , Xi'an , Shaanxi , P.R. China .
b Shaanxi Key Laboratory of Stomatology , Xi'an , Shaanxi , P.R. China , and.
Crit Rev Biotechnol. 2016 Aug;36(4):760-75. doi: 10.3109/07388551.2015.1035693. Epub 2015 May 25.
Periodontal disease is considered as a widespread infectious disease and the most common cause of tooth loss in adults. Attempts for developing periodontal disease treatment strategies, including drug delivery and regeneration approaches, provide a useful experimental model for the evaluation of future periodontal therapies. Recently, emerging advanced biomaterials including hydrogels, films, micro/nanofibers and particles, hold great potential to be utilized as cell/drug carriers for local drug delivery and biomimetic scaffolds for future regeneration therapies. In this review, first, we describe the pathogenesis of periodontal disease, including plaque formation, immune response and inflammatory reactions caused by bacteria. Second, periodontal therapy and an overview of current biomaterials in periodontal regenerative medicine have been discussed. Third, the roles of state-of-the-art biomaterials, including hydrogels, films, micro/nanofibers and micro/nanoparticles, developed for periodontal disease treatment and periodontal tissue regeneration, and their fabrication methods, have been presented. Finally, biological properties, including biocompatibility, biodegradability and immunogenicity of the biomaterials, together with their current applications strategies are given. Conclusive remarks and future perspectives for such advanced biomaterials are discussed.
牙周病被认为是一种广泛存在的传染病,也是成年人牙齿丧失的最常见原因。开发牙周病治疗策略的尝试,包括药物输送和再生方法,为未来牙周病治疗的评估提供了一个有用的实验模型。最近,新兴的先进生物材料,包括水凝胶、薄膜、微/纳米纤维和颗粒,具有作为局部药物输送的细胞/药物载体和未来再生治疗的仿生支架的巨大潜力。在这篇综述中,首先,我们描述了牙周病的发病机制,包括菌斑的形成、细菌引起的免疫反应和炎症反应。其次,讨论了牙周病的治疗方法和牙周再生医学中当前生物材料的概述。第三,介绍了为牙周病治疗和牙周组织再生而开发的先进生物材料的现状,包括水凝胶、薄膜、微/纳米纤维和微/纳米颗粒及其制造方法。最后,介绍了生物材料的生物相容性、可生物降解性和免疫原性及其当前应用策略。讨论了对这些先进生物材料的结论性评价和未来展望。