Hasan Elias, Lewis Christopher J, Hernandez Joel Giron, Gentile Piergiorgio, Ferreira Ana M
School of Engineering, Faculty of Science, Agriculture & Engineering, Newcastle University Newcastle upon Tyne UK
Northern Regional Burn Centre, Royal Victoria Infirmary Newcastle upon Tyne UK
RSC Adv. 2025 Apr 29;15(18):13908-13923. doi: 10.1039/d4ra08115c. eCollection 2025 Apr 28.
Skin wound management remains a critical global healthcare challenge, with annual costs exceeding £30 billion. Traditional treatments like autografts face limitations in cost, availability, and recovery times. This review explores spray-assisted Layer-by-Layer (LbL) technology as a transformative approach for wound healing, emphasising its ability to deposit natural- and synthetic-polyelectrolytes such as chitosan, alginate, hyaluronic acid, and collagen into nanoscale coatings. These biocompatible multilayers integrate therapeutic agents to accelerate healing, reduce infections, and mimic native extracellular matrix structures. The work highlights emerging spray device innovations that optimise spray parameters to enhance cell viability, coverage, and clinical outcomes. While LbL techniques demonstrate versatility across substrates and scalability immersion, spray, and microfluidic methods, challenges persist in manufacturing uniformity and clinical translation. The review underscores the urgent need for clinical trials to validate Lbl-based coatings in real-world settings and addresses gaps in portable, sustainable device development. By bridging advanced materials science with clinical practice, spray-assisted LbL technology offers a roadmap to overcome current wound care limitations, prioritising biocompatibility, cost-efficiency, and improved patient safety in regenerative medicine.
皮肤伤口处理仍然是一项严峻的全球医疗挑战,每年花费超过300亿英镑。像自体移植这样的传统治疗方法在成本、可获得性和恢复时间方面存在局限性。本综述探讨了喷雾辅助逐层(LbL)技术作为一种用于伤口愈合的变革性方法,强调其能够将壳聚糖、藻酸盐、透明质酸和胶原蛋白等天然和合成聚电解质沉积到纳米级涂层中。这些生物相容性多层膜整合了治疗剂,以加速愈合、减少感染并模拟天然细胞外基质结构。这项工作突出了新兴的喷雾设备创新,这些创新优化了喷雾参数,以提高细胞活力、覆盖率和临床效果。虽然LbL技术在各种基材上都展示了多功能性以及在浸没、喷雾和微流体方法方面的可扩展性,但在制造均匀性和临床转化方面仍然存在挑战。该综述强调迫切需要进行临床试验,以在实际环境中验证基于LbL的涂层,并解决便携式、可持续设备开发方面的差距。通过将先进材料科学与临床实践相结合,喷雾辅助LbL技术提供了一条克服当前伤口护理局限性的路线图,在再生医学中优先考虑生物相容性、成本效益和提高患者安全性。