h2s清除水凝胶减轻线粒体损伤控制牙周炎。

Journal of dental research Pub Date : 2025-02-01 Epub Date: 2024-12-04 DOI:10.1177/00220345241291540
C Xie, Q Zhang, A Bianco, S Ge, B Ma
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引用次数: 0

摘要

H2S作为牙周病原菌的典型代谢物,与牙周炎的发生发展有明显的正相关关系。生理浓度的H2S可以调节许多生物过程。然而,牙周袋中过量的H2S可引发促炎细胞因子的分泌,引起氧化应激,导致人牙龈成纤维细胞线粒体损伤和细胞死亡,加剧牙周炎的发展和牙周组织的破坏。H2S通过维持细菌氧化还原平衡和增强抗生素耐药性来促进细菌的生存和增殖。不幸的是,在牙周炎治疗过程中清除H2S通常被忽视。本文制备了一种具有清除h2s能力的透明质酸甲基丙烯酰/ZnO (HMZ)复合水凝胶,以增强对牙周炎的治疗作用。HMZ水凝胶具有良好的注射性和细胞相容性,并能与ZnO反应脱除H2S。结果,HMZ水凝胶能够在48小时内将人牙龈成纤维细胞的细胞活力从13%提高到120%,将人牙周韧带成纤维细胞的细胞活力从22%提高到94%,恢复线粒体稳态,并减轻cGAS-STING信号通路介导的炎症。同时,HMZ水凝胶具有良好的抗菌性能和去除菌斑生物膜的效率。体内实验结果进一步证实,HMZ水凝胶使牙周袋内H2S浓度从0.7 ~ 0.8 mM降至正常水平(0.3 ~ 0.4 mM),杀死牙周组织内细菌,抑制破骨细胞活性,缓解过度炎症,使牙髓-牙釉质交界处与牙槽骨嵴之间的垂直距离从第7天的1175µm减少到798µm,第14天的1075µm减少到693µm。实现有效的牙周骨再生。总之,一种基于H2S清除的有希望的策略被开发出来,以提高牙周炎的治疗效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
H2S-Scavenging Hydrogel Alleviating Mitochondria Damage to Control Periodontitis.

H2S, as a typical metabolite of periodontal pathogens, exhibits a clear positive correlation with the occurrence and development of periodontitis. H2S at physiological concentrations can regulate many biological processes. However, excess H2S in the periodontal pocket can trigger secretion of proinflammatory cytokines, cause oxidative stress, and result in mitochondrial damage and cell death in human gingival fibroblasts, exacerbating periodontitis development and periodontal tissue destruction. Worse, H2S facilitates bacteria survival and proliferation by maintaining bacterial redox balance and enhancing antibiotic resistance. Unfortunately, scavenging H2S during periodontitis treatment is usually ignored. Herein, a kind of hyaluronic acid methacryloyl/ZnO (HMZ) composite hydrogel with an H2S-scavenging ability was prepared to enhance periodontitis treatment. The HMZ hydrogel possessed good injectability and cytocompatibility and was able to remove H2S by a reaction with ZnO. As a result, the HMZ hydrogel was able to increase cell viability from 13% to 120% for human gingival fibroblasts and 22% to 94% for human periodontal ligament fibroblasts at 48 h, restore mitochondrial homeostasis, and alleviate cGAS-STING signaling pathway-mediated inflammation. Meanwhile, the HMZ hydrogel showed satisfactory antibacterial properties and efficiency of plaque biofilm removal. The in vivo results further confirmed that HMZ hydrogel decreased the concentration of H2S within the periodontal pocket from 0.7 to 0.8 mM to the normal level (0.3 to 0.4 mM), killed the bacteria in the periodontal tissues, inhibited osteoclast activity, relieved excess inflammation, and decreased the vertical distance between the cementoenamel junction and the alveolar bone crest from 1,175 µm to 798 µm on the 7th day and from 1,075 µm to 693 µm on the 14th day, achieving efficient periodontal bone regeneration. In brief, an H2S scavenging-based promising strategy was developed to enhance the therapeutic efficiency of periodontitis.

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