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首页> 外文期刊>European journal of pharmaceutical sciences >Norfloxacin-loaded collagen/chitosan scaffolds for skin reconstruction: Preparation, evaluation and in-vivo wound healing assessment
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Norfloxacin-loaded collagen/chitosan scaffolds for skin reconstruction: Preparation, evaluation and in-vivo wound healing assessment

机译:负载诺氟沙星的胶原蛋白/壳聚糖支架,用于皮肤重建:准备,评估和体内伤口愈合评估

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Biomaterial scaffolds are versatile tools as drug carrier for treatment of wounds. A series of norfloxacin-loaded scaffolds were synthesized for treatment of wounds by combining collagen with two different types of chitosan using freeze-drying technique. Subsequently, scaffolds were screened in terms of morphology, water absorption and retention capacity, biodegradation, ex-vivo bioadhesive strength, in-vitro drug release biological compatibility, X-ray diffractometry, differential scanning calorimetry as well as in-vivo evaluation. The results indicate that the scaffold mechanical strength is dependent on the type of used chitosan. The prepared scaffolds contained interconnected porous architecture. The scaffolds had highwater uptake and retention capacity with extended biodegradation rate. Scaffolds prepared with chitosan HCl showed superior bioadhesive strength compared to those prepared with low molecular weight chitosan. All scaffolds showed almost 100% drug release within 24 h. As identified by the terahertz pulsed imaging measurements, there is single scaffold area with the same concentration. After 28 days of wound dressing with selected norfoloxacin-loaded or unloaded collagen/chitosan scaffolds in Albino rats, it was found that the tissue regeneration time was fast compared to non-treated wounds. Furthermore, the drug-loaded scaffolds showed normal structure of an intact epidermal layer as well as the underlying dermis as revealed by histopathological studies. The obtained results suggest that the investigated norfloxacin-loaded collagen/chitosan scaffold is a potential candidate for skin regeneration application. (C) 2015 Elsevier B.V. All rights reserved.
机译:生物材料支架是用作治疗伤口的药物载体的多功能工具。通过使用冻干技术将胶原蛋白与两种不同类型的壳聚糖结合,合成了一系列装载诺氟沙星的支架,用于治疗伤口。随后,在形态,吸水和保持能力,生物降解,离体生物粘附强度,体外药物释放生物相容性,X射线衍射法,差示扫描量热法以及体内评价方面对支架进行筛选。结果表明,支架的机械强度取决于所用壳聚糖的类型。制备的支架包含相互连接的多孔结构。支架具有较高的吸水率和保留能力,并具有较高的生物降解率。与用低分子量壳聚糖制备的支架相比,用壳聚糖HCl制备的支架表现出优异的生物粘附强度。所有支架均在24小时内显示几乎100%的药物释放。如太赫兹脉冲成像测量所确定的,存在具有相同浓度的单个支架区域。在白化病大鼠中,用选定的装载或未装载诺氟沙星的胶原蛋白/壳聚糖支架包扎伤口28天后,发现与未处理的伤口相比,组织再生时间快。此外,如通过组织病理学研究所揭示的,载有药物的支架显示完整的表皮层以及下面的真皮的正常结构。获得的结果表明,研究的负载诺氟沙星的胶原蛋白/壳聚糖支架是皮肤再生应用的潜在候选者。 (C)2015 Elsevier B.V.保留所有权利。

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