Xiang Yajing, Pan Zhuge, Qi Xiaoliang, Ge XinXin, Xiang Junbo, Xu Hangbin, Cai Erya, Lan Yulong, Chen Xiaojing, Li Ying, Shi Yizuo, Shen Jianliang, Liu Jinsong
School & Hospital of Stomatology, Wenzhou Medical University, Wenzhou, Zhejiang, 325027, China.
Department of Otolaryngology, Affiliated Jinhua Hospital, Zhejiang University School of Medicine, Jinhua, Zhejiang, 321000, China.
Bioact Mater. 2024 May 30;39:562-581. doi: 10.1016/j.bioactmat.2024.04.022. eCollection 2024 Sep.
Oral ulcers can be managed using a variety of biomaterials that deliver drugs or cytokines. However, many patients experience minimal benefits from certain medical treatments because of poor compliance, short retention times in the oral cavity, and inadequate drug efficacy. Herein, we present a novel hydrogel patch (SCE2) composed of a biopolymer matrix (featuring ultraviolet-triggered adhesion properties) loaded with cuttlefish ink nanoparticles (possessing pro-healing functions). Applying a straightforward local method initiates the formation of a hydrogel barrier that adheres to mucosal injuries under the influence of ultraviolet light. SCE2 then demonstrates exceptional capabilities for near-infrared photothermal sterilization and neutralization of reactive oxygen species. These properties contribute to the elimination of bacteria and the management of the oxidation process, thus accelerating the healing phase's progression from inflammation to proliferation. In studies involving diabetic rats with oral ulcers, the SCE2 adhesive patch significantly quickens recovery by altering the inflamed state of the injured area, facilitating rapid re-epithelialization, and fostering angiogenesis. In conclusion, this light-sensitive hydrogel patch offers a promising path to expedited wound healing, potentially transforming treatment strategies for clinical oral ulcers.
口腔溃疡可以使用多种能够递送药物或细胞因子的生物材料来进行治疗。然而,由于依从性差、在口腔中的保留时间短以及药物疗效不足,许多患者从某些治疗中获得的益处甚微。在此,我们展示了一种新型水凝胶贴片(SCE2),它由一种生物聚合物基质(具有紫外线触发的粘附特性)和负载有乌贼墨纳米颗粒(具有促进愈合功能)组成。采用一种简单的局部方法可引发水凝胶屏障的形成,该屏障在紫外线的影响下粘附于粘膜损伤处。然后,SCE2展现出卓越的近红外光热杀菌和中和活性氧的能力。这些特性有助于消除细菌并控制氧化过程,从而加速愈合阶段从炎症向增殖的进展。在涉及患有口腔溃疡的糖尿病大鼠的研究中,SCE2粘性贴片通过改变受伤区域的炎症状态、促进快速重新上皮化以及促进血管生成,显著加快了恢复速度。总之,这种光敏水凝胶贴片为加速伤口愈合提供了一条有前景的途径,可能会改变临床口腔溃疡的治疗策略。