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Fabrication and characterization of hydrocolloid dressing with silk fibroin nanoparticle for wound healing

机译:用丝素蛋白纳米粒子进行水胶体敷料的制造与表征伤口愈合

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Hydrocolloid dressings have been developed for many types of wound healing. In particular, dressing is a critical component in the successful recover of burn injuries, which causes a great number of people to not only suffer from physical but also psychological and economic anguish each year. Additionally, silk fibroin is the safest material for tissue engineering due to biocompatibility. In this study, we fabricated hydrocolloid dressings incorporating silk fibroin nanoparticles to enhance the efficacy of hydrocolloid dressing and then use this silk fibroin nanoparticle hydrocolloid dressing (SFNHD) in animal models to treat burn wounds. The structures and properties of SFNHD were characterized using tensile strength and cck-8 assay. The results indicated the structural stability and the cellular biocompatibility of the hydrocolloid dressing suggesting that SFNHO can be applied to the treatment of wounds. To demonstrate the capacity of a silk fibroin hydrocolloid dressing to treat burn wounds, we compared SFNHD to gauze and Neoderm?, a commercially available dressing. This study clearly demonstrated accelerated wound healing with greater wound structural integrity and minimal wound size after treatment with SFNHD. These observations indicate that SFNHD may be an improvement upon current standard dressings such as Gauze and Neoderm? for burn wounds.
机译:已经为许多类型的伤口愈合开发了水胶体敷料。特别是,敷料是成功恢复伯恩伤害的关键组成部分,这导致大量人民每年不仅患上物理而且遭受心理和经济痛苦。另外,丝素蛋白是由于生物相容性导致的组织工程最安全的材料。在这项研究中,我们制造了含有丝素蛋白纳米粒子的水胶体敷料,提高水胶体敷料的功效,然后在动物模型中使用该丝素蛋白纳米粒子水胶体敷料(SFNHD)来治疗烧伤伤口。使用拉伸强度和CCK-8测定来表征SFNHD的结构和性质。结果表明了水胶体敷料的结构稳定性和细胞生物相容性,表明SFNHO可以应用于伤口的治疗。为了证明丝素蛋白水胶体敷料敷料治疗烧伤伤口的能力,我们将SFNHD与纱布和奈良素(Neoderm)进行比较,是商业上可用的敷料。本研究清楚地证明了伤口愈合,伤口结构完整性和用SFNHD处理后的最小伤口尺寸。这些观察结果表明,SFNHD可能是当前标准敷料的改进,如纱布和奈良?用于焚烧伤口。

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