Li Ling, Qin Wen, Ye Tao, Wang Chenyu, Qin Zixuan, Ma Yuxuan, Mu Zhao, Jiao Kai, Tay Franklin R, Niu Wen, Niu Lina
State Key Laboratory of Oral and Maxillofacial Reconstruction and Regeneration & National Clinical Research Center for Oral Diseases & Shaanxi Key Laboratory of Stomatology, School of Stomatology, The Fourth Military Medical University, Xi'an, Shaanxi 710032, China.
Department of Stomatology, Tangdu Hospital & State Key Laboratory of Oral and Maxillofacial Reconstruction and Regeneration & School of Stomatology, The Fourth Military Medical University, Xi'an, Shaanxi 710032, China.
ACS Nano. 2025 Mar 4;19(8):7981-7995. doi: 10.1021/acsnano.4c15227. Epub 2025 Feb 17.
Periodontitis is a chronic inflammatory condition affecting the periodontal tissue. This condition worsens in diabetic patients due to oxidative stress and inflammation. Herein, we investigated a treatment using bioactive Zn-V-Si-Ca glass nanoparticle hydrogel microneedles. The microneedles contain bioactive glass nanoparticles codoped with zinc and vanadium ions. They also include gallic acid and oxidized methacrylated hyaluronic acid. These microneedles address bacterial dysbiosis and oxidative stress in diabetic periodontitis. They provide antibacterial and antioxidant effects. The microneedles deliver therapeutic agents directly into the gingival tissue. This enhances drug retention and absorption by penetrating the mucosal barrier. studies demonstrated biocompatibility, excellent antioxidant properties, and acceptable mechanical properties. Meanwhile, the microneedle patches demonstrated antibacterial properties effective against a Gram-negative periodontal pathogen as well as a Gram-positive oral bacterium. experiments were performed using a diabetic rat model with periodontitis. Results showed significant improvement in alveolar bone regeneration. The hydrogel modulated the inflammatory microenvironment effectively. Ribonucleic acid sequencing revealed downregulation of JAK-STAT and NF-κB inflammation signaling pathways. This work presents a distinctive approach to suppressing the inflammatory response and modulate immune responses for the purpose of treating diabetic periodontitis early.
牙周炎是一种影响牙周组织的慢性炎症性疾病。由于氧化应激和炎症,这种疾病在糖尿病患者中会恶化。在此,我们研究了一种使用生物活性锌-钒-硅-钙玻璃纳米颗粒水凝胶微针的治疗方法。这些微针含有共掺杂锌离子和钒离子的生物活性玻璃纳米颗粒。它们还包括没食子酸和氧化甲基丙烯酸化透明质酸。这些微针可解决糖尿病性牙周炎中的细菌生态失调和氧化应激问题。它们具有抗菌和抗氧化作用。微针将治疗剂直接递送至牙龈组织。通过穿透粘膜屏障,这增强了药物的保留和吸收。研究证明了其生物相容性、优异的抗氧化性能和可接受的机械性能。同时,微针贴片对革兰氏阴性牙周病原体和革兰氏阳性口腔细菌均显示出有效的抗菌性能。使用患有牙周炎的糖尿病大鼠模型进行了实验。结果显示牙槽骨再生有显著改善。水凝胶有效地调节了炎症微环境。核糖核酸测序显示JAK-STAT和NF-κB炎症信号通路下调。这项工作提出了一种独特的方法来抑制炎症反应并调节免疫反应,以便早期治疗糖尿病性牙周炎。