College of Pharmaceutical Sciences, Zhejiang University, Hangzhou, 310058, People's Republic of China.
College of Materials Science and Engineering, State Key Laboratory of Silicon Materials, Zhejiang University, Hangzhou, 310027, People's Republic of China.
J Nanobiotechnology. 2023 Feb 3;21(1):38. doi: 10.1186/s12951-023-01787-5.
Wound repair, along with skin appendage regeneration, is challenged by insufficient angiogenesis and neural regeneration. Therefore, promoting both proangiogenic and neuro-regenerative therapeutic effects is essential for effective wound repair. However, most therapeutic systems apply these strategies separately or ineffectively. This study investigates the performance of an all-in-one smart dressing (ASD) that integrates angiogenic functional materials and multiple biological factors within a light crosslinked hydrogel, forming a multi-functional dressing capable of facilitating simultaneous micro-vascularization and neural regeneration. The ASD uses a zeolite-imidazolate framework 67 with anchored vanadium oxide (VO@ZIF-67) that allows for the on-demand release of Co with fluctuations in pH at the wound site to stimulate angiogenesis. It can simultaneously release CXCL12, ligustroflavone, and ginsenoside Rg1 in a sustained manner to enhance the recruitment of endogenous mesenchymal stem cells, inhibit senescence, and induce neural differentiation to achieve in situ nerve regeneration. The ASD can stimulate rapid angiogenesis and nerve regeneration within 17 days through multiple angiogenic and neuro-regenerative cues within one dressing. This study provides a proof-of-concept for integrating functional nanomaterials and multiple complementary drugs within a smart dressing for simultaneous angiogenesis and neural regeneration.
伤口修复以及皮肤附属物再生受到血管生成和神经再生不足的挑战。因此,促进促血管生成和神经再生的治疗效果对于有效的伤口修复至关重要。然而,大多数治疗系统分别或以无效的方式应用这些策略。本研究探讨了一种集成了血管生成功能材料和多种生物因子的一体式智能敷料(ASD)的性能,该敷料在光交联水凝胶内形成一种多功能敷料,能够促进微血管生成和神经再生的同步进行。ASD 使用沸石咪唑骨架 67 固定的氧化钒(VO@ZIF-67),允许在伤口部位 pH 波动时按需释放 Co,从而刺激血管生成。它可以持续释放 CXCL12、藁本内酯和人参皂苷 Rg1,以增强内源性间充质干细胞的募集、抑制衰老并诱导神经分化,从而实现原位神经再生。ASD 通过一个敷料内的多种促血管生成和神经再生线索,在 17 天内刺激快速血管生成和神经再生。本研究为在智能敷料内集成功能纳米材料和多种互补药物以同时进行血管生成和神经再生提供了概念验证。