Major of Biomedical Engineering, Division of Smart Healthcare, College of Information Technology and Convergence and New-senior Healthcare Innovation Center (BK21 Plus), Pukyong National University, Busan 48513, Republic of Korea.
Marine integrated Biomedical Technology Center, The National Key Research Institutes in Universities, Pukyong National University, Busan 48513, Republic of Korea.
J Mater Chem B. 2024 May 8;12(18):4451-4466. doi: 10.1039/d3tb02932h.
Non-healing chronic diabetic wound treatment remains an unsolved healthcare challenge and still threatens patients' lives. Recently, hydrogel dressings based on natural biomaterials have been widely investigated to accelerate the healing of diabetic wounds. In this study, we introduce a bioactive hydrogel based on fish gelatin (FG) as a candidate for diabetic wound treatments, which is a recently emerged substitute for mammalian derived gelatin. The composite hydrogel simply fabricated with FG and oxidized hyaluronate (OHy) through Schiff base reaction could successfully accelerate wound healing due to their adequate mechanical stability and self-healing ability. studies showed that the fabricated hydrogels exhibited cytocompatibility and could reduce pro-inflammatory cytokine expression such as NO, IL-1β, TNF-α, and PGE in lipopolysaccharide (LPS)-stimulated RAW 264.7 macrophages. In addition, the production of reactive oxygen species (ROS), a key marker of free radicals producing oxidative stress, was also reduced by fabricated hydrogels. Furthermore, experiments demonstrated that the hydrogel could promote wound closure, re-epithelialization, collagen deposition, and protein expression of CD31, CD206, and Arg1 in diabetic mice models. Our study highlights the advanced potential of FG as a promising alternative material and indicates that FOHI can be successfully used for diabetic wound healing applications.
慢性糖尿病难愈合性创面的治疗仍然是一个未解决的医疗保健挑战,仍然威胁着患者的生命。最近,基于天然生物材料的水凝胶敷料已被广泛研究用于加速糖尿病创面的愈合。在这项研究中,我们介绍了一种基于鱼明胶(FG)的生物活性水凝胶,作为糖尿病创面治疗的候选物,它是最近出现的哺乳动物明胶替代品。通过席夫碱反应简单制备的 FG 和氧化透明质酸(OHy)复合水凝胶由于具有足够的机械稳定性和自修复能力,成功地加速了伤口愈合。研究表明,所制备的水凝胶表现出细胞相容性,并能降低脂多糖(LPS)刺激的 RAW 264.7 巨噬细胞中促炎细胞因子的表达,如 NO、IL-1β、TNF-α 和 PGE。此外,由水凝胶产生的活性氧物质(ROS),一种产生氧化应激的自由基的关键标志物,也被减少。此外,实验表明,水凝胶能促进糖尿病小鼠模型的伤口闭合、上皮化、胶原沉积以及 CD31、CD206 和 Arg1 的蛋白表达。我们的研究强调了 FG 作为一种有前途的替代材料的先进潜力,并表明 FOHI 可成功用于糖尿病创面愈合应用。