Innovative biomaterials for the treatment of periodontal disease

IF 1.5 Q3 DENTISTRY, ORAL SURGERY & MEDICINE
Yi Zhu, Chen Tao, Cynthia Goh, A. Shrestha
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引用次数: 1

Abstract

Periodontitis is a multifactorial disease that involves the destruction of hard and soft tissues surrounding the tooth. Routine periodontal treatment includes mechanical debridement (surgical and non-surgical) and the systemic administration of antibiotics. In contrast, severe and chronic periodontitis involves aggressive tissue destruction and bone resorption, and the damage is usually irreversible. In these severe cases, bone grafts, the delivery of growth hormones, and guided tissue regeneration can all be used to stimulate periodontal regeneration. However, these approaches do not result in consistent and predictable treatment outcomes. As a result, advanced biomaterials have evolved as an adjunctive approach to improve clinical performance. These novel biomaterials are designed to either prolong the release of antibacterial agents or osteogenic molecules, or to act as immunomodulators to promote healing. The first half of this review briefly summarizes the key immune cells and their underlying cellular pathways implicated in periodontitis. Advanced biomaterials designed to promote periodontal regeneration will be highlighted in the second half. Finally, the limitations of the current experimental design and the challenges of translational science will be discussed.
用于治疗牙周病的创新生物材料
牙周炎是一种多因素疾病,涉及牙齿周围硬组织和软组织的破坏。常规牙周治疗包括机械清创术(手术和非手术)和全身给予抗生素。相比之下,严重和慢性牙周炎涉及侵袭性组织破坏和骨吸收,其损伤通常是不可逆转的。在这些严重的病例中,骨移植、生长激素的输送和引导组织再生都可以用来刺激牙周再生。然而,这些方法并不能产生一致和可预测的治疗结果。因此,先进的生物材料已经发展成为提高临床性能的辅助方法。这些新型生物材料旨在延长抗菌剂或成骨分子的释放,或作为免疫调节剂促进愈合。这篇综述的前半部分简要总结了牙周炎的关键免疫细胞及其潜在的细胞途径。下半年将重点介绍旨在促进牙周再生的先进生物材料。最后,将讨论当前实验设计的局限性和转化科学的挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
2.10
自引率
0.00%
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0
审稿时长
13 weeks
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