Division of Dermatopathology, Mayo Clinic College of Medicine Mayo Clinic, Scottsdale, Arizona 85259, United States.
ACS Appl Mater Interfaces. 2020 Jun 24;12(25):27951-27960. doi: 10.1021/acsami.0c04755. Epub 2020 Jun 9.
Copper ions play an important role in several physiological processes, including angiogenesis, growth factor induction and extracellular matrix remodeling, that modulate wound healing and tissue repair. In this work, copper-loaded alginate fibers were generated and used as surgical sutures for repair of incisional wounds in live mice. Approximately 95% of initially loaded copper ions were released from the sutures within the first 24 h following an initial burst release. This localized delivery of copper at the incision site resulted in significantly higher recovery in tissue biomechanical strengths compared to conventional nylon and calcium alginate sutures at early times following surgery. Irradiation of copper alginate sutures with near-infrared light resulted in a robust photothermal response and led to efficacies similar to those seen with nonirradiated sutures. Histopathology and immunohistological analyses indicated significantly reduced epithelial gap and higher number of CD31 cells, which is indicative of increased angiogenesis around the incision site. Delivery of copper ions did not result in toxicity under the conditions employed. Our findings demonstrate that delivery of ionic copper from sutures resulted in efficacious approximation and healing of incisional wounds, and copper-eluting fibers may have translational potential for accelerating repair in surgical and trauma wounds.
铜离子在多种生理过程中发挥着重要作用,包括血管生成、生长因子诱导和细胞外基质重塑,这些过程调节着伤口愈合和组织修复。在这项工作中,我们制备了负载铜离子的海藻酸盐纤维,并将其用作活体小鼠切口伤口修复的外科缝线。在最初的爆发释放后 24 小时内,缝线中约有 95%的初始负载铜离子被释放。与传统的尼龙和钙基海藻酸盐缝线相比,这种在切口部位局部输送铜离子的方法,在手术后的早期,能显著提高组织生物力学强度的恢复。用近红外光照射铜海藻酸盐缝线会产生强烈的光热响应,其疗效与未辐照缝线相似。组织病理学和免疫组织化学分析表明,上皮间隙明显缩小,CD31 细胞数量增多,这表明切口部位的血管生成增加。在实验所采用的条件下,铜离子的输送并未导致毒性。我们的研究结果表明,缝线中铜离子的释放能有效促进切口愈合,而铜离子洗脱纤维可能具有促进外科和创伤伤口修复的转化潜力。