The Institute for Advanced Study (IAS), Shenzhen University, Shenzhen, Guangdong 518060, People's Republic of China.
Engineering Research Center of Molecular & Neuroimaging, Ministry of Education, School of Life Science and Technology, Xidian University, Xi'an, Shaanxi 710126, People's Republic of China.
ACS Nano. 2024 Jan 30;18(4):3468-3479. doi: 10.1021/acsnano.3c10766. Epub 2024 Jan 16.
Chronic wounds have imposed a severe physical and economic burden on the global healthcare system, which are usually treated by the delivery of drugs or bioactive molecules to the wound bed through wound dressings. In this work, we have demonstrated a hydrogel-functionalized bandage with Janus wettability in a bilayer structure to achieve unidirectional drug delivery and multifunctional wound care. The Janus patterned bandage with porous gradient wetting channels on the upper layer is responsible for the unidirectional transport of the drug from the outside to the wound bed (up to 90% drug transport efficiency) while preventing drug diffusion in unwanted directions (<8%). The hydrogel composed of chitosan quaternary ammonium salt (HACC), poly(vinyl alcohol) (PVA), and poly(acrylic acid) (PAA) at the bottom layer further functionalized such a bandage with biocompatibility, excellent antibacterial properties, and hemostatic ability to promote wound healing. Especially, the hydrogel-functionalized bandage with Janus wettability exhibits excellent mechanical flexibility (∼198% strain), which can comply well with skin deformation (stretching, bending, or twisting) and maintain unidirectional drug delivery behavior without any leakage. The in vivo full-thickness skin wound model confirms that the hydrogel-functionalized bandage can significantly facilitate epithelialization and collagen deposition and improve drug delivery efficiency, thus promoting wound closure and healing (the wound healing ratio was 98.10% at day 15). Such a synergistic strategy of unidirectional drug delivery and multifunctional wound care provides a more efficient, economical, and direct method to promote wound healing, which could be used as a potential high-performance wound dressing for clinical application.
慢性伤口给全球医疗保健系统带来了严重的身体和经济负担,通常通过将药物或生物活性分子输送到伤口床来治疗伤口。在这项工作中,我们展示了一种具有双层结构的 Janus 润湿性水凝胶功能化绷带,以实现单向药物输送和多功能伤口护理。上层具有多孔梯度润湿通道的 Janus 图案绷带负责将药物从外部单向输送到伤口床(药物输送效率高达 90%),同时防止药物向不需要的方向扩散(<8%)。由壳聚糖季铵盐(HACC)、聚乙烯醇(PVA)和聚丙烯酸(PAA)组成的水凝胶在底层进一步将这种绷带功能化,具有生物相容性、优异的抗菌性能和止血能力,以促进伤口愈合。特别是,具有 Janus 润湿性的水凝胶功能化绷带具有出色的机械柔韧性(约 198%应变),可以很好地适应皮肤变形(拉伸、弯曲或扭曲),并保持单向药物输送行为而不会发生任何泄漏。体内全厚皮肤伤口模型证实,水凝胶功能化绷带可显著促进上皮化和胶原沉积,并提高药物输送效率,从而促进伤口闭合和愈合(第 15 天的伤口愈合率为 98.10%)。这种单向药物输送和多功能伤口护理的协同策略为促进伤口愈合提供了一种更高效、经济和直接的方法,有望成为一种用于临床应用的高性能伤口敷料。