Chen Canwen, Wang Yu, Zhang Han, Zhang Hui, Dong Weiliang, Sun Weijian, Zhao Yuanjin
Department of Rheumatology and Immunology, Institute of Translational Medicine, The Affiliated Drum Tower Hospital of Nanjing University Medical School, Nanjing, 210008, China.
State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing, 210096, China.
Bioact Mater. 2021 Dec 21;15:194-202. doi: 10.1016/j.bioactmat.2021.11.037. eCollection 2022 Sep.
The treatment of diabetic wounds remains a great challenge for medical community. Here, we present a novel structural color supramolecular hydrogel patch for diabetic wound treatment. This hydrogel patch was created by using N-acryloyl glycinamide (NAGA) and 1-vinyl-1,2,4-triazole (VTZ) mixed supramolecular hydrogel as the inverse opal scaffold, and temperature responsive poly(N-isopropylacrylamide) (PNIPAM) hydrogel loaded with vascular endothelial cell growth factor (VEGF) as a filler. Supramolecular hydrogel renders hydrogel patch with superior mechanical properties, in which NAGA and VTZ also provide self-healing and antibacterial properties, respectively. Besides, as the existence of PNIPAM, the hydrogel patch was endowed with thermal-responsiveness property, which could release actives in response to temperature stimulus. Given these excellent performances, we have demonstrated that the supramolecular hydrogel patch could significantly enhance the wound healing process in diabetes rats by downregulating the expression of inflammatory factors, promoting collagen deposition and angiogenesis. Attractively, due to responsive optical property of inverse opal scaffold, the hydrogel patch could display color-sensing behavior that was suitable for the wound monitoring and management as well as guidance of clinical treatment. These distinctive features indicate that the presented hydrogel patches have huge potential values in biomedical fields.
糖尿病伤口的治疗仍然是医学界面临的巨大挑战。在此,我们展示了一种用于糖尿病伤口治疗的新型结构色超分子水凝胶贴片。这种水凝胶贴片是通过使用N-丙烯酰甘氨酰胺(NAGA)和1-乙烯基-1,2,4-三唑(VTZ)混合超分子水凝胶作为反蛋白石支架,并将负载血管内皮生长因子(VEGF)的温度响应性聚(N-异丙基丙烯酰胺)(PNIPAM)水凝胶作为填充物制成的。超分子水凝胶使水凝胶贴片具有优异的机械性能,其中NAGA和VTZ还分别提供自愈和抗菌性能。此外,由于PNIPAM的存在,水凝胶贴片具有热响应特性,可响应温度刺激释放活性物质。鉴于这些优异的性能,我们已经证明超分子水凝胶贴片可以通过下调炎症因子的表达、促进胶原蛋白沉积和血管生成来显著加速糖尿病大鼠的伤口愈合过程。吸引人的是,由于反蛋白石支架的响应光学特性,水凝胶贴片可以表现出颜色传感行为,适用于伤口监测和管理以及临床治疗指导。这些独特的特性表明所展示的水凝胶贴片在生物医学领域具有巨大的潜在价值。