Astaneh Mohammad Ebrahim, Fereydouni Narges
Department of Anatomical Sciences, School of Medicine, Fasa University of Medical Sciences, Fasa, Iran.
Department of Tissue Engineering, School of Medicine, Fasa University of Medical Sciences, Fasa, Iran.
Heliyon. 2024 Sep 26;10(20):e38481. doi: 10.1016/j.heliyon.2024.e38481. eCollection 2024 Oct 30.
Diabetic wounds pose a significant challenge in healthcare due to their complex nature and the difficulties they present in treatment and healing. Impaired healing processes in individuals with diabetes can lead to complications and prolonged recovery times. However, recent advancements in wound healing provide reasons for optimism. Researchers are actively developing innovative strategies and therapies specifically tailored to address the unique challenges of diabetic wounds. One focus area is biomimetic hydrogel scaffolds that mimic the natural extracellular matrix, promoting angiogenesis, collagen deposition, and the healing process while also reducing infection risk. Copper nanoparticles and copper compounds incorporated into hydrogels release copper ions with antimicrobial, anti-inflammatory, and angiogenic properties. Copper reduces infection risk, modulates inflammatory response, and promotes tissue regeneration through cell adhesion, proliferation, and differentiation. Utilizing copper nanoparticles has transformative potential for expediting diabetic wound healing and improving patient outcomes while enhancing overall well-being by preventing severe complications associated with untreated wounds. It is crucial to write a review highlighting the importance of investigating the use of copper nanoparticles and compounds in diabetic wound healing and tissue engineering. These groundbreaking strategies hold the potential to transform the treatment of diabetic wounds, accelerating the healing process and enhancing patient outcomes.
糖尿病伤口因其复杂的性质以及在治疗和愈合过程中所呈现出的困难,给医疗保健带来了重大挑战。糖尿病患者愈合过程受损会导致并发症和恢复时间延长。然而,伤口愈合领域的最新进展给人带来了乐观的理由。研究人员正在积极开发创新策略和疗法,专门针对糖尿病伤口的独特挑战。一个重点领域是仿生水凝胶支架,它模仿天然细胞外基质,促进血管生成、胶原蛋白沉积和愈合过程,同时还降低感染风险。掺入水凝胶中的铜纳米颗粒和铜化合物会释放具有抗菌、抗炎和促血管生成特性的铜离子。铜降低感染风险,调节炎症反应,并通过细胞黏附、增殖和分化促进组织再生。利用铜纳米颗粒在加速糖尿病伤口愈合和改善患者预后方面具有变革潜力,同时通过预防与未治疗伤口相关的严重并发症来提高整体健康水平。撰写一篇综述强调研究铜纳米颗粒和化合物在糖尿病伤口愈合和组织工程中的应用的重要性至关重要。这些开创性的策略有可能改变糖尿病伤口的治疗方式,加速愈合过程并改善患者预后。