Instrumental Analysis Center, Dalian Polytechnic University, 1 Qinggongyuan Road, Dalian 116034, P. R. China.
School of Light Industry and Chemical Engineering, Dalian Polytechnic University, 1 Qinggongyuan Road, Dalian 116034, P. R. China.
J Mater Chem B. 2022 Aug 10;10(31):6026-6037. doi: 10.1039/d2tb01021f.
The development of hydrogel dressings provides unprecedented opportunities for clinical medicine. However, the traditional hydrogel dressings cannot achieve controllable adhesion and separation, which often brings unbearable pain and secondary damage to patients during removal. In this work, a starch-regulated adhesive hydrogel dressing with controllable separation properties is reported. This hydrogel dressing can achieve rapid separation through the dissociation competition mechanism of polar small molecules, which will not cause any damage or discomfort to the skin or tissues, and greatly facilitate dressing replacement. The adhesive strength of the hydrogel reaches 0.06 MPa, and remains relatively stable after repeated utilization. Meanwhile, the inhibition rate of the hydrogel for , and is more than 99.9%. At the same time, the hydrogel also has good swelling properties, mechanical properties and biocompatibility, and exhibits a high healing efficiency (95.01 ± 3.76%) in a rat full-thickness skin defect model. This novel hydrogel dressing with controllable separation properties provides a facile and effective method for wound management and treatment, and has great promise for long-term application of wound dressings.
水凝胶敷料的发展为临床医学提供了前所未有的机遇。然而,传统的水凝胶敷料无法实现可控的粘附和分离,这在移除时常常给患者带来难以忍受的疼痛和二次损伤。在这项工作中,报道了一种具有可控分离性能的淀粉调控型粘附水凝胶敷料。这种水凝胶敷料可以通过极性小分子的离解竞争机制实现快速分离,不会对皮肤或组织造成任何损伤或不适,极大地方便了敷料更换。水凝胶的粘附强度达到 0.06 MPa,并且在重复使用后仍保持相对稳定。同时,水凝胶对 、 和 的抑制率均超过 99.9%。此外,水凝胶还具有良好的溶胀性能、机械性能和生物相容性,在大鼠全层皮肤缺损模型中表现出较高的愈合效率(95.01±3.76%)。这种具有可控分离性能的新型水凝胶敷料为伤口管理和治疗提供了一种简便有效的方法,在伤口敷料的长期应用方面具有广阔的前景。