Marine College, Shandong University, Weihai 264209, China.
Institute of Biomedical and Pharmaceutical Technology, Fuzhou University, Fuzhou 350002, China.
Int J Biol Macromol. 2022 Aug 31;215:377-386. doi: 10.1016/j.ijbiomac.2022.06.103. Epub 2022 Jun 18.
Oxidative stress damage caused by free radicals around the moist microenvironment of wound has been a clinical challenge in skin tissue healing. Here, a novel chitosan-based bioinspired asymmetric wound repair composite (BAWRC) film was designed by facilitated endogenous tissue engineering strategy through layer-by-layer self-assembly technology for accelerated wound healing. The asymmetric characteristics were skillfully reflected by two different functional layers: hydrophilic chitosan (CS)/silk fibroin (SF) repair layer, and a hydrophobic bacteriostatic tea tree oil (TTO) layer with a rough surface. Simultaneously, sodium ascorbate (SA)-entrapped poly (lactic-co-glycolic acid) (PLGA) microspheres are distributed homogeneously in the hydrophilic layer to induce antioxidant response for skin repair. The distinctive asymmetric structure of BAWRC film endows it with synergistic effects, i.e., protects against the risk of infection from the external environment and facilitates deep skin wound healing. Results show that the minimum inhibition and bactericidal concentration of the BAWRC film were 1.25 and 6.25 mg/mL, respectively, demonstrating good antibacterial properties. The content of biofilm formation was significantly reduced when the concentration of TTO exceeds 5 mg/mL, indicating TTO shows a positive effect on bacteriostasis. In addition, the DPPH rates of BAWRC film were up to 64.7 % after incubation for 12 h, which was ascribed to that the release of SA and TTO as a natural product could accelerate free radical scavenging. The BAWRC film exhibited excellent biocompatibility, and good antibacterial capacity, enhancing adhesion and proliferation of the NIH3T3 cell in vitro, further facilitating the healing of a rat full-thickness skin wounds model. Herein, this versatile asymmetric film possesses great potential for clinical management of wound healing and related soft tissue regeneration.
自由基在伤口潮湿的微环境中造成的氧化应激损伤一直是皮肤组织愈合的临床挑战。在这里,通过层层自组装技术,设计了一种新型壳聚糖基仿生非对称伤口修复复合膜(BAWRC),通过促进内源性组织工程策略来加速伤口愈合。两个不同的功能层巧妙地体现了非对称特性:亲水性壳聚糖(CS)/丝素(SF)修复层和具有粗糙表面的疏水性抑菌茶树油(TTO)层。同时,抗坏血酸钠(SA)包埋的聚(乳酸-共-羟基乙酸)(PLGA)微球均匀分布在亲水性层中,以诱导抗氧化反应促进皮肤修复。BAWRC 膜的独特非对称结构赋予其协同作用,即保护免受外部环境感染的风险,并促进深层皮肤伤口愈合。结果表明,BAWRC 膜的最小抑菌浓度和杀菌浓度分别为 1.25 和 6.25mg/mL,具有良好的抗菌性能。当 TTO 的浓度超过 5mg/mL 时,生物膜形成的含量显著降低,表明 TTO 对抑菌有积极作用。此外,BAWRC 膜在孵育 12 小时后 DPPH 率高达 64.7%,这归因于 SA 和 TTO 的释放作为天然产物可以加速自由基清除。BAWRC 膜表现出优异的生物相容性和良好的抗菌能力,促进 NIH3T3 细胞在体外的黏附和增殖,进一步促进大鼠全层皮肤伤口模型的愈合。在此,这种多功能非对称膜在伤口愈合和相关软组织再生的临床管理中具有巨大的潜力。