Qi Wenxin, Dong Naijun, Wu Lingling, Zhang Xueqi, Li He, Wu Hao, Ward Natalie, Yu Jian, Liu He, Wang Jiao, Deng Xiaoyong, Zhao Robert Chunhua
School of Life Sciences, Shanghai University, Shanghai, China.
School of Medicine, Shanghai University, Shanghai, China.
Bioact Mater. 2022 Nov 9;23:53-68. doi: 10.1016/j.bioactmat.2022.10.027. eCollection 2023 May.
The high occurrence rate and difficulties in symptom control are listed as the major problems of oral mucosal disease by medical professionals. Following the development of oral mucosal lesions, the oral microenvironment changes, immunity declines, and continuous bacterial stimulation causes wound infection. Traditional antibacterial drugs are ineffective for oral mucosal lesions. To overcome this problem, a light-responsive antibacterial hydrogel containing sustained-release BMSCs was inspired by the trauma environment in the oral cavity, which is different from that on the body surface since it mostly remains under dark conditions. In the absence of light, the hydrogel seals the wound to form a barrier, exerts a natural bacteriostatic effect, and prevents invasion by foreign bacteria. Simultaneously, mesenchymal stem cells are presented, and the released growth factors and other substances have excellent anti-inflammatory and angiogenic effects, which result in rapid repair of the damaged site. Under light conditions, after photo-induced shedding of the hydrogel, RuBA exerts an antibacterial effect accompanied by degradation of the hydrogel. Results in a rat oral mucosal repair model demonstrate that DCS-RuBA-BMSCs could rapidly repair the oral mucosa within 4 days. Sequencing data provide ideas for further analysis of the intrinsic molecular mechanisms and signaling pathways. Taken together, our results suggest that this light-responsive antibacterial hydrogel loaded with BMSCs can be used for rapid wound repair and may advance the development of therapeutic strategies for the treatment of clinical oral mucosal defects.
医学专业人士将高发生率和症状控制困难列为口腔黏膜疾病的主要问题。随着口腔黏膜病变的发展,口腔微环境发生变化,免疫力下降,持续的细菌刺激导致伤口感染。传统抗菌药物对口腔黏膜病变无效。为克服这一问题,受口腔创伤环境启发,研制出一种含缓释骨髓间充质干细胞的光响应抗菌水凝胶,口腔环境与体表不同,大多处于黑暗条件下。在无光条件下,水凝胶封闭伤口形成屏障,发挥天然抑菌作用,防止外来细菌入侵。同时,呈现间充质干细胞,释放的生长因子等物质具有优异的抗炎和促血管生成作用,导致受损部位快速修复。在光照条件下,水凝胶光致脱落后,RuBA发挥抗菌作用并伴随水凝胶降解。大鼠口腔黏膜修复模型结果表明,DCS-RuBA-BMSCs可在4天内快速修复口腔黏膜。测序数据为进一步分析内在分子机制和信号通路提供思路。综上所述,我们的结果表明,这种负载骨髓间充质干细胞的光响应抗菌水凝胶可用于快速伤口修复,并可能推动临床口腔黏膜缺损治疗策略的发展。