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首页> 外文期刊>International journal of applied mechanics >Assessment of the Efficacy of Tributylammonium Alginate Surface-Modified Polyurethane as an Antibacterial Elastomeric Wound Dressing for both Noninfected and Infected Full-Thickness Wounds
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Assessment of the Efficacy of Tributylammonium Alginate Surface-Modified Polyurethane as an Antibacterial Elastomeric Wound Dressing for both Noninfected and Infected Full-Thickness Wounds

机译:评估Tributylamponium藻酸铵表面改性聚氨酯作为无感染和受感染的全厚伤口的抗菌弹性伤口敷料的疗效

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Risk factors of nonhealing wounds include persistent bacterial infections and rapid onset of dehydration; therefore, wound dressings should be used to accelerate the healing process by helping to disinfect the wound bed and provide moisture. Herein, we introduce a transparent tributylammonium alginate surface-modified cationic polyurethane (CPU) wound dressing, which is appropriate for full-thickness wounds. We studied the physicochemical properties of the dressing using Fourier transform infrared, H-1 NMR, and C-13 NMR spectroscopies and scanning electron microscopy, energy-dispersive X-ray, and thermomechanical analyses. The surface-modified polyurethane demonstrated improved hydrophilicity and tensile Young's modulus that approximated natural skin, which was in the range of 1.5-3 MPa. Cell viability and in vitro wound closure, assessed by MTS and the scratch assay, confirmed that the dressing was cytocompatible and possessed fibroblast migratory-promoting activity. The surface-modified CPU had up to 100% antibacterial activity against Staphylococcus aureus and Escherichia coli as Gram-positive and Gram-negative bacteria, respectively. In vivo assessments of both noninfected and infected wounds revealed that the surface-modified CPU dressing resulted in a faster healing rate because it reduced the persistent inflammatory phase, enhanced collagen deposition, and improved the formation of mature blood vessels when compared with CPU and commercial Tegaderm wound dressing.
机译:非热伤害的危险因素包括持续的细菌感染和脱水的快速发作;因此,应使用伤口敷料来加速愈合过程,帮助消毒伤口床并提供水分。在此,我们介绍透明的杂丁基铵表面改性阳离子聚氨酯(CPU)伤口敷料,这适用于全厚伤口。我们研究了使用傅里叶变换红外,H-1 NMR和C-13 NMR谱和扫描电子显微镜,能量分散X射线和热机械分析的敷料的物理化学性质。表面改性的聚氨酯证明了改善的亲水性和拉伸杨氏模量,其近似的天然皮肤,其在1.5-3MPa的范围内。通过MTS和划痕测定评估的细胞活力和体外缠绕闭合证实,敷料是细胞织立性和具有成纤维细胞迁移活性的敷料。表面改性的CPU分别对葡萄球菌和大肠杆菌的抗菌活性高达100%抗菌活性,分别为革兰氏阳性和革兰氏阴性细菌。在Vivo评估无感染和感染的伤口揭示了表面改性的CPU敷料,导致更快的愈合率,因为它减少了持续炎症相,增强的胶原沉积,并改善了与CPU和商业Tegaderm相比成熟血管的形成伤口敷料。

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