首页> 外文期刊>International Journal of Pharmaceutics >A novel in situ silver/hyaluronan bio-nanocomposite fabrics for wound crossMark and chronic ulcer dressing: In vitro and in vivo evaluations
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A novel in situ silver/hyaluronan bio-nanocomposite fabrics for wound crossMark and chronic ulcer dressing: In vitro and in vivo evaluations

机译:一种新颖的原位银/透明质酸生物纳米复合材料织物,用于伤口十字标记和慢性溃疡敷料:体外和体内评估

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In-situ formed hyaluronan/silver (HA/Ag) nanoparticles (NPs) were used to prepare composite fibers/ fabrics for the first time. Different concentrations of silver nitrate (1, 2 mg/100 ml) were added at ambient temperature to sodium hyaluronate solution (40 mg/ml), then the pH was increased to 8 by adding sodium hydroxide. The in-situ formed HA/Ag-NPs were used to prepare fibers/nonwoven fabrics by wet dry -spinning technique (WDST). UV/vis spectroscopy, SEM, TEM, DLS, XPS, XRD and TGA were employed to characterize the structure and composition of the nanocomposite, surface morphology of fiber/fabrics, particle size of Ag-NPs, chemical interactions of Ag-0 and HA functional groups, crystallinity and thermal stability of the wound dressing, respectively. The resultant HA/Ag-NPs1 and HA/Ag-NPs2 composite showed uniformly dispersed throughout HA fiber/fabrics (SEM), an excellent distribution of Ag-NPs with 25 +/- 2, nm size (TEM, DLS) and acceptable mechanical properties. The XRD analysis showed that the in situ preparation of Ag-NPs increased the crystallinity of the resultant fabrics as well as the thermal stability. The antibacterial performance of medical HA/Ag-NPs fabrics was evaluated against gram negative bacteria E. coli K12, exhibiting significant bactericidal activity. The fibers did not show any cytotoxicity against human keratinocyte cell line (HaCaT). In-vivo animal tests indicated that the prepared wound dressing has strong healing efficacy (non-diabetics/diabetics rat model) compared to the plain HA fabrics and greatly accelerated the healing process. Based on our results, the new HA/AgNPs-2 mg nonwoven wound dressing fabrics can be used in treating wounds and chronic ulcers as well as cell carrier in different biological research and tissue engineering. (C) 2017 Elsevier B.V. All rights reserved.
机译:原位形成的透明质酸/银(HA / AG)纳米颗粒(NPS)首次制备复合纤维/织物。将不同浓度的硝酸银(1,2mg / 100mL)在环境温度下加入透明质酸钠溶液(40mg / mL),然后通过加入氢氧化钠将pH增加到8。使用原位形成的HA / AG-NPS通过湿性干盐技术(WDST)制备纤维/非织造织物。采用UV / Vis光谱,SEM,TEM,DLS,XPS,XRD和TGA来表征纳米复合材料的结构和组成,纤维/织物的表面形貌,Ag-NPS的粒度,Ag-0和HA的化学相互作用卷绕敷料的官能团,结晶度和热稳定性。所得的HA / Ag-NPS1和HA / Ag-NPS2复合材料均匀地分散在整个HA纤维/织物(SEM)中,具有25 +/- 2,NM尺寸(TEM,DLS)和可接受的机械优异的Ag-NPS的优异分布特性。 XRD分析表明,AG-NPS的原位制备增加了所得织物的结晶度以及热稳定性。评估医疗HA / Ag-NPS织物的抗菌性能,对革兰氏阴性细菌大肠杆菌K12评价,表现出显着的杀菌活性。纤维未显示出对人角蛋白细胞细胞系(HACAT)的任何细胞毒性。体内动物试验表明,与普通的HA织物相比,制备的伤口敷料具有强烈的愈合效果(非糖尿病/糖尿病患者大鼠模型),并大大加速了愈合过程。基于我们的结果,新的HA / AgNPS-2mg非织造织物卷绕织物可用于治疗伤口和慢性溃疡以及不同生物研究和组织工程中的细胞载体。 (c)2017年Elsevier B.V.保留所有权利。

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