Ferri Martina, Ganzerli Francesco, Portone Alberto, Petrachi Tiziana, Veronesi Elena, Morselli Davide, Degli Esposti Micaela, Fabbri Paola
Department of Civil, Chemical, Environmental and Materials Engineering (DICAM), Università di Bologna, Via Terracini 28, Bologna 40131, Italy.
National Interuniversity Consortium of Materials Science and Technology (INSTM), Via Giusti 9, Firenze 50121, Italy.
ACS Appl Mater Interfaces. 2025 Jun 18;17(24):35066-35079. doi: 10.1021/acsami.5c03066. Epub 2025 May 19.
The development of multifunctional materials that actively enhance the wound healing process is critically important in addressing clinical and public healthcare challenges. Here, we report a multifunctional hydrogel obtained through physical cross-linking of chitosan and wood tannins for active wound management. Tannins, as polyphenolic wood-waste derivatives, act both as multifunctional additives and cross-linking agents, resulting in a stable and highly swellable hydrogel (>2000%·mg). The dressing is produced in the form of a dry and rigid film for easy transportation. After swelling, the material exhibits adequate Young's modulus (∼7 MPa, comparable to the stratum corneum's stiffness), improved flexibility, and suitable adhesion strength to adapt to joint movements. Polyphenolic tannins also provide the material with high antioxidant activity against DPPH radicals (100% RSA), showing potential for preventing complications during the inflammation phase. Moreover, tannins can completely block skin-damaging UV light without significantly altering the material's transparency, thus allowing constant visual wound monitoring. Wound healing investigations on abdominoplasty-derived skin demonstrated that tannins enhance the normal skin barrier restoration process, thereby facilitating the transition toward wound regeneration. This work offers a sustainable strategy for valorizing agri-food waste in a fully biobased material to address active wound management.
开发能够积极促进伤口愈合过程的多功能材料对于应对临床和公共卫生保健挑战至关重要。在此,我们报告了一种通过壳聚糖和木单宁物理交联获得的多功能水凝胶,用于主动伤口管理。单宁作为多酚类木材废料衍生物,既作为多功能添加剂又作为交联剂,形成了一种稳定且高度可溶胀的水凝胶(>2000%·mg)。敷料以干燥坚硬薄膜的形式生产,便于运输。肿胀后,该材料表现出足够的杨氏模量(约7 MPa,与角质层的硬度相当)、更好的柔韧性以及适合关节活动的粘附强度。多酚类单宁还为材料提供了对DPPH自由基的高抗氧化活性(100% RSA),显示出预防炎症阶段并发症的潜力。此外,单宁可以完全阻挡损伤皮肤的紫外线,而不会显著改变材料的透明度,从而允许持续的伤口视觉监测。对腹壁成形术获得的皮肤进行的伤口愈合研究表明,单宁可增强正常皮肤屏障的恢复过程,从而促进向伤口再生的转变。这项工作提供了一种可持续策略,将农业食品废料转化为完全基于生物的材料,以解决主动伤口管理问题。