College of Chemistry and Materials Science, Shanghai Normal University, No. 100 Guilin Road, Shanghai 200234, China.
Shanghai Key Laboratory of Regulatory Biology, Institute of Biomedical Sciences and School of Life Sciences, East China Normal University, Shanghai 200241, China.
ACS Appl Mater Interfaces. 2020 Apr 22;12(16):18319-18331. doi: 10.1021/acsami.0c01792. Epub 2020 Apr 8.
Chronic wounds are one of the most serious complications of diabetes mellitus. Even though utilizing nitric oxide (NO) as a gas medicine to repair diabetic wounds presents a promising strategy, controlling the NO release behavior in the affected area, which is vital for NO-based therapy, still remains a significant challenge. In this work, a copper-based metal-organic framework, namely, HKUST-1, has been introduced as a NO-loading vehicle, and a NO sustained release system with the core-shell structure has been designed through the electrospinning method. The results show that the NO is quantificationally and stably loaded in the HKUST-1 particles, and the NO-loaded HKUST-1 particles are well incorporated into the core layer of the coaxial nanofiber. Therefore, NO can be controllably released with an average release rate of 1.74 nmol L h for more than 14 days. Moreover, the additional copper ions released from the degradable HKUST-1 play a synergistic role with NO to promote endothelial cell growth and significantly improve the angiogenesis, collagen deposition as well as anti-inflammatory property in the wound bed, which eventually accelerate the diabetic wound healing. These results suggest that such a copper-based metal-organic framework material as a controllable NO-releasing vehicle is a highly efficient therapy for diabetic wounds.
慢性创面是糖尿病最严重的并发症之一。尽管利用一氧化氮(NO)作为气体药物来修复糖尿病创面是一种很有前途的策略,但控制NO 在受影响区域的释放行为对于基于 NO 的治疗仍然是一个重大挑战。在这项工作中,引入了一种基于铜的金属有机骨架,即 HKUST-1,作为 NO 负载载体,并通过静电纺丝法设计了具有核壳结构的 NO 持续释放系统。结果表明,NO 被定量且稳定地负载在 HKUST-1 颗粒中,并且负载 NO 的 HKUST-1 颗粒很好地掺入同轴纳米纤维的芯层中。因此,NO 可以以平均释放速率 1.74 nmol L h 持续释放超过 14 天。此外,从可降解的 HKUST-1 中释放的额外铜离子与 NO 协同作用,促进内皮细胞生长,并显著改善创面床的血管生成、胶原沉积和抗炎特性,从而加速糖尿病创面的愈合。这些结果表明,作为一种可控的 NO 释放载体的这种基于铜的金属有机骨架材料是治疗糖尿病创面的一种高效疗法。