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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Fabrication of asymmetric nanostarch reinforced Chitosan/PVP membrane and its evaluation as an antibacterial patch for in vivo wound healing application
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Fabrication of asymmetric nanostarch reinforced Chitosan/PVP membrane and its evaluation as an antibacterial patch for in vivo wound healing application

机译:非对称纳米型耐壳聚糖/ PVP膜的制备及其评价作为体内伤口愈合应用的抗菌贴剂

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摘要

Starch is an abundant, relatively inexpensive and ecofriendly materials which can be easily convert into nanopartide and also as filler for the preparation of bionanocomposite for wound dressing application. Symmetric and asymmetric Chitosan(C)/PVP(P) films containing porous structure supported with nanostarch (NS) were prepared by salt leaching method for wound dressing application. Symmetric Chitosan/PVP/Nanostarch (CPNS) film with 1% and 3% wt nanostarch was prepared without coating of stearic acid whereas asymmetric Chitosan/PVP/Nanostarch-Stearic acid (CPNS-S) film was prepared by coating of stearic acid. The stearic acid coated surface possesses hydrophobic water repellent, microporous, bacterial anti adhesion property and the stearic acid uncoated hydrophilic surface shows superior antibacterial and noncytotoxicity property with highly porous character. All the symmetric and asymmetric films exhibit almost same mechanical, barrier, swelling and hemolytic property reveals that the stearic acid does not affect the physical and hemolytic property whereas the concentration of nanostarch greatly influence the above property. The reinforcement of nanostarch with chitosan and PVP was proved by TEM and SEM analysis. The CPNS1%-S film shows excellent S. aureus anti adhesion property. Furthermore, the in vivo excision-type wound healing proved that the CPNS1%-S film enhanced the healing effect and increased re-epithelialization and collagen formation. (C) 2018 Elsevier B.V. All rights reserved.
机译:淀粉是一种丰富的,相对廉价的和环保型材料,其能够容易地转换成的纳米粒子,也可以作为填料用于制备bionanocomposite的用于伤口敷料的应用程序。对称和不对称的壳聚糖(C)/ PVP(P)含有nanostarch(NS)支承多孔结构膜通过盐浸出创伤敷料应用方法制备。对称壳聚糖/ PVP / Nanostarch(CPNS)用1%和3膜重量%nanostarch未经而不对称壳聚糖/ PVP / Nanostarch-硬脂酸(CPNS-S)膜的硬脂酸涂覆制备硬脂酸涂覆制备。硬脂酸涂覆的表面具有疏水性的防水性,微孔的,细菌的抗粘着性和硬脂酸未涂覆亲水性表面显示出优异的抗菌剂和noncytotoxicity用高度多孔的字符属性。所有的对称和非对称膜表现出几乎相同的机械,阻隔,肿胀和溶血性表明,硬脂酸不影响物理和溶血性而nanostarch的浓度大大影响上述特性。壳聚糖和PVP nanostarch的加固用TEM和SEM分析证明。所述CPNS1%-S膜显示出优异的金黄色葡萄球菌的抗粘附性能。此外,在体内切除型伤口愈合证明CPNS1%-S膜增强了治疗效果和增加的再上皮化和胶原蛋白的形成。 (c)2018年elestvier b.v.保留所有权利。

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