Zheng Kai, Raza Faisal, Xiao Wanshu, Zafar Hajra, Song Haiyao, Zhang Feng, Ge Zili
Department of stomatology, The First Affiliated Hospital of Soochow University, Suzhou, Jiangsu 215000, China.
School of Pharmacy, Shanghai Jiao Tong University, Shanghai 200240, China.
Colloids Surf B Biointerfaces. 2025 Jul;251:114607. doi: 10.1016/j.colsurfb.2025.114607. Epub 2025 Mar 5.
Periodontitis is one of the major oral health issues worldwide, with significant impacts on oral health and patients's quality of life, but current therapies have not achieved optimal regeneration of periodontal tissue. This study developed scaffolds using natural tussah silk fibroin (TSF) cross-linked with regenerated silk fibroin (SF) nanofibers to improve mechanical properties and wet-state stability. Zinc oxide (ZnO) and polydopamine (PDA) composite nanoparticles were loaded into scaffold to impart its antibacterial and photothermal properties to construct a photo-responsive composite scaffold (ZnO/PDA/TSF-SF). After characterization, ZnO/PDA/TSF-SF demonstrated excellent antibacterial ability, biocompatibility, and photothermal stability. In vitro cell evaluations under 635 nm red light irradiation-mediated photo-biomodulation (PBM) demonstrated that ZnO/PDA/TSF-SF promoted fibroblast proliferation and enhanced expression of proteins and genes associated with tissue repair, such as collagen I (Col I), fibronectin (FN), and alpha smooth muscle actin (α-SMA). A rat model of periodontitis developed for evaluations of antibacterial and tissue repair effects showed that ZnO/PDA/TSF-SF improved alveolar bone and reversed bone loss. ZnO/PDA/TSF-SF improved inflammation significantly through reduction in tumor necrosis factor alpha (TNF-α), interleukin-1β (IL-1β), and IL-6 levels in serum and gingival tissues of modeled rats. Also, the scaffold markedly increased levels of anti-inflammatory cytokine interleukin-10 (IL-10) and elevated protein and mRNA expression levels of tissue repair-related proteins and endothelial cell markers. ZnO/PDA/TSF-SF scaffold exhibited good biocompatibility, osteogenesis, and photo-responsive antibacterial properties, thereby demonstrating therapeutic potential in treating periodontitis.
牙周炎是全球主要的口腔健康问题之一,对口腔健康和患者生活质量有重大影响,但目前的治疗方法尚未实现牙周组织的最佳再生。本研究开发了一种支架,该支架使用天然柞蚕丝素蛋白(TSF)与再生丝素蛋白(SF)纳米纤维交联,以改善机械性能和湿态稳定性。将氧化锌(ZnO)和聚多巴胺(PDA)复合纳米颗粒负载到支架中,赋予其抗菌和光热性能,构建了一种光响应复合支架(ZnO/PDA/TSF-SF)。经过表征,ZnO/PDA/TSF-SF表现出优异的抗菌能力、生物相容性和光热稳定性。在635nm红光照射介导的光生物调节(PBM)下进行的体外细胞评估表明,ZnO/PDA/TSF-SF促进了成纤维细胞增殖,并增强了与组织修复相关的蛋白质和基因的表达,如I型胶原蛋白(Col I)、纤连蛋白(FN)和α平滑肌肌动蛋白(α-SMA)。为评估抗菌和组织修复效果而建立的牙周炎大鼠模型表明,ZnO/PDA/TSF-SF改善了牙槽骨并逆转了骨质流失。ZnO/PDA/TSF-SF通过降低模型大鼠血清和牙龈组织中肿瘤坏死因子α(TNF-α)、白细胞介素-1β(IL-1β)和IL-6水平,显著改善了炎症。此外,该支架显著提高了抗炎细胞因子白细胞介素-10(IL-10)的水平,并提高了组织修复相关蛋白和内皮细胞标志物的蛋白质和mRNA表达水平。ZnO/PDA/TSF-SF支架表现出良好的生物相容性、成骨能力和光响应抗菌性能,从而证明了其在治疗牙周炎方面的治疗潜力。