MOE Key Laboratory of Advanced Textile Materials & Manufacturing Technology, Zhejiang Sci-Tech University, Hangzhou 310018, China; Hangzhou Singclean Medical Products Co., Ltd., Hangzhou 310018, China.
Institute of Burn Research, Southwest Hospital, State Key Lab of Trauma, Burn and Combined Injury, Chongqing Key Laboratory for Disease Proteomics, Third Military Medical University (Army Medical University), Chongqing 400038, China.
Int J Biol Macromol. 2023 Jul 1;242(Pt 3):125144. doi: 10.1016/j.ijbiomac.2023.125144. Epub 2023 May 31.
Diabetic ulcer is a severe complication of diabetes that can lead to amputation due to the overproduction of pro-inflammatory factors and reactive oxygen species (ROS). In this study, a composite nanofibrous dressing was developed by combining Prussian blue nanocrystals (PBNCs) and heparin sodium (Hep) through electrospinning, electrospraying, and chemical deposition. The nanofibrous dressing (PPBDH) was designed to take advantage of the excellent pro-inflammatory factor-adsorbing capability of Hep and the ROS-scavenging capabilities of PBNCs, resulting in synergistic treatment. It is worth noting that the nanozymes were firmly anchored to the fiber surfaces through slight polymer swelling caused by the solvent during electrospinning, thereby guaranteeing the preservation of the enzyme-like activity levels of PBNCs. The PPBDH dressing was found to be effective in reducing intracellular ROS levels, protecting cells from ROS-induced apoptosis, and capturing excessive pro-inflammatory factors, including chemoattractant protein-1 (MCP-1) and interleukin-1β (IL-1β). Furthermore, a chronic wound healing evaluation conducted in vivo demonstrated that the PPBDH dressing was able to effectively alleviate the inflammatory response and accelerate wound healing. This research presents an innovative approach to fabricate nanozyme hybrid nanofibrous dressings, which have great potential in accelerating the healing of chronic and refractory wounds with uncontrolled inflammation.
糖尿病溃疡是糖尿病的一种严重并发症,由于促炎因子和活性氧(ROS)的过度产生,可能导致截肢。在这项研究中,通过静电纺丝、静电喷雾和化学沉积将普鲁士蓝纳米晶体(PBNCs)和肝素钠(Hep)结合在一起,开发出一种复合纳米纤维敷料。该纳米纤维敷料(PPBDH)旨在利用 Hep 优异的促炎因子吸附能力和 PBNCs 的 ROS 清除能力,实现协同治疗。值得注意的是,纳米酶通过静电纺丝过程中溶剂引起的轻微聚合物溶胀而牢固地锚定在纤维表面上,从而保证了 PBNCs 的酶样活性水平得以保留。研究发现,PPBDH 敷料可有效降低细胞内 ROS 水平,保护细胞免受 ROS 诱导的凋亡,并捕获过量的促炎因子,包括趋化因子蛋白-1(MCP-1)和白细胞介素-1β(IL-1β)。此外,体内慢性伤口愈合评估表明,PPBDH 敷料能够有效减轻炎症反应并加速伤口愈合。本研究提出了一种制备纳米酶杂化纳米纤维敷料的创新方法,该方法在加速治疗慢性和难治性炎症失控性伤口方面具有很大的潜力。