Hybrid Hydrogels for Synergistic Periodontal Antibacterial Treatment with Sustained Drug Release and NIR-Responsive Photothermal Effect
Jian Lin, Zhiqi He, Fen Liu, Jie Feng, Chengyi Huang, Xueli Sun, Hui Deng
Wenzhou Medical University University of Chinese Academy of Sciences Sir Run Run Shaw Hospital Zhejiang University
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Background: Periodontal pathogenic bacteria promote the destruction of periodontal tissues and cause loosening and loss of teeth in adults. However, complete removal of periodontal pathogenic bacteria, at both the bottom of the periodontal pocket and the root bifurcation area, remains challenging. In this work, we explored a synergistic antibiotic and photothermal treatment, which is considered an alternative strategy for highly efficient periodontal antibacterial therapy. Methods: Mesoporous silica (MSNs) on the surface of Au nanobipyramids (Au NBPs) were designed to achieve the sustained release of the drug and photothermal antibacterials. The mesoporous silica-coated Au NBPs (Au [email protected] 2 ) were mixed with gelatin methacrylate (GelMA-Au [email protected] 2 ). Au [email protected] 2 and GelMA-Au [email protected] 2 hybrid hydrogels were characterized, and the drug content and photothermal properties in terms of the release profile, bacterial inhibition, and cell growth were investigated. Results: The GelMA-Au [email protected] 2 hybrid hydrogels showed controllable minocycline delivery, and the drug release rates increased under 808 nm near-infrared (NIR) light irradiation. The hydrogels also exhibited excellent antibacterial properties, and the antibacterial efficacy of the antibiotic and photothermal treatment was as high as 90% and 66.7% against Porphyromonas gingivalis ( P. gingivalis ), respectively. Moreover, regardless of NIR irradiation, cell viability was over 80% and the concentration of Au [email protected] 2 in the hybrid hydrogels was as high as 100 μg/mL. Conclusion: We designed a new near-infrared light (NIR)-activated hybrid hydrogel that offers both sustained release of antibacterial drugs and photothermal treatment. Such sustained release pattern yields the potential to rapidly eliminate periodontal pathogens in the periodontal pocket, and the photothermal treatment maintains low bacterial retention after the drug treatment. Keywords: periodontitis, mesoporous silica, Au nanobipyramids, gelatin methacrylate, photothermal therapy, antibacterial properties
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生物医学Oral microbiology and periodontitis research
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