Wang Feng, Wei Shengnan, He Jingya, Xing Aili, Zhang Yuan, Li Zhongrui, Lu Xiangxiang, Zhao Bin, Sun Bin
Department of Oral and Maxillofacial Surgery, School and Hospital of Stomatology, Jilin University, Changchun 130041, China.
Jilin Provincial Key Laboratory of Tooth Development and Bone Remodeling, Jilin University, Changchun 130041, China.
ACS Omega. 2024 Nov 20;9(48):47585-47596. doi: 10.1021/acsomega.4c06642. eCollection 2024 Dec 3.
Periodontitis, the chronic inflammation of the periodontal tissues caused by bacteria in plaque, is the leading cause of tooth loss in adults in the world. Currently, periodontitis is effectively treated with mechanical cleaning and the use of antibiotics. However, these treatments only temporarily remove plaque, which can rapidly proliferate and multiply in periodontal pockets over time. Although antibiotics have positive antimicrobial effects, their long-term use increases the risk of the emergence of drug-resistant strains. The emergence of resistant strains reduces the effectiveness of periodontitis treatment and makes the disease more difficult to control. Herein, this paper reports the development of an injectable self-oxygenating composite hydrogel for periodontal therapy, which was produced by loading CaO nanoparticles and ascorbic acid into an injectable alginate hydrogel. CaO can improve the periodontal pocket microenvironment by reacting with water to generate oxygen, calcium ions can be used as a bone regeneration material, and ascorbic acid protects cells. The authors further showed that the composite hydrogel inhibited growth and colonization of anaerobic bacteria, reduced the degree of inflammation, and promoted alveolar bone regeneration. In conclusion, these findings suggest that the composite hydrogel can be used as a biocompatible, convenient, and effective method for periodontitis treatment.
牙周炎是由牙菌斑中的细菌引起的牙周组织慢性炎症,是全球成年人牙齿缺失的主要原因。目前,牙周炎通过机械清洁和使用抗生素进行有效治疗。然而,这些治疗方法只能暂时清除牙菌斑,随着时间的推移,牙菌斑会在牙周袋中迅速增殖。尽管抗生素具有积极的抗菌作用,但其长期使用会增加耐药菌株出现的风险。耐药菌株的出现降低了牙周炎治疗的效果,使疾病更难控制。在此,本文报道了一种用于牙周治疗的可注射自供氧复合水凝胶的研发,该水凝胶是通过将氧化钙纳米颗粒和抗坏血酸负载到可注射的海藻酸盐水凝胶中制备而成。氧化钙可通过与水反应产生氧气来改善牙周袋微环境,钙离子可作为骨再生材料,抗坏血酸则可保护细胞。作者进一步表明,该复合水凝胶可抑制厌氧菌的生长和定植,减轻炎症程度,并促进牙槽骨再生。总之,这些研究结果表明,该复合水凝胶可作为一种生物相容性好、方便且有效的牙周炎治疗方法。