首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Wound dressing properties of cationized cotton fabric treated with carrageenan/cyclodextrin hydrogel loaded with honey bee propolis extract
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Wound dressing properties of cationized cotton fabric treated with carrageenan/cyclodextrin hydrogel loaded with honey bee propolis extract

机译:用蜂蜜蜂蜂胶提取物装载甲壳花蛋白南/环糊精水凝胶凝固棉织物的伤口敷料性能

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The current study was set to prepare a delivery system based on a mixture of biodegradable polymeric hydrogel (i.e., carrageenan (kappa-CAR) and beta-cyclodextrin (beta-CD)) for encapsulating honey bee propolis extract (HBP). The crosslinking agent; glyoxal was incorporated to increase the insolubility of the HBP-loaded hydrogel to fit the cotton fabric treatments. The synthesized hydrogels were fully characterized to examine their surface and internal morphology and to visualize the chemical interaction between kappa-CAR and beta-CD via SEM and FTIR techniques. The SEM pictures ensured the existent of many pores within the formed hydrogel. The swelling properties of kappa-CAR/beta-CD/HBP were also studied in terms of glyoxal and HBP concentrations which displayed water holding with higher mechanical properties. Furthermore, in vitro release assessment of HBP from kappa-CAR/beta-CD hydrogel was also studied at pH 7.6. Therefore, kappa-CAR/beta-CD/HBP hydrogel was successfully used as fining compound for the cationized cotton fabrics. The data obtained emphasized that the surface of cationized cotton fabrics was deposited and penetrated with a film of kappa-CAR/beta-CD/HBP. In addition, the antimicrobial activity of the treated cationized fabric was evaluated against many species of bacteria and fungus producing highly inhibition zone at lower concentrations of HBP. Accordingly, the cationized cotton fabric treated with kappa-CAR/beta-CD/HBP has a high potential in the wound healing fabrics. (C) 2019 Elsevier B.V. All rights reserved.
机译:目前的研究被设定为用于封装蜂蜜蜂胶提取物(HBP)制备基于生物降解的聚合物水凝胶(即,角叉菜胶(卡帕-CAR)和β-环糊精(β-CD))的混合物的输送系统。交联剂;乙二醛被合并以增加HBP-加载水凝胶的不溶性,以适应棉织物护理。合成的水凝胶完全表征以检查其表面和内部的形态和以显现通过SEM和FTIR技术卡帕-CAR和β-CD之间的化学相互作用。该SEM照片确保了存在许多气孔形成的水凝胶内。卡伯-CAR /β-CD / HBP的溶胀性能进行了研究在乙二醛和HBP的浓度,其显示持水具有较高的机械性能方面。此外,在从卡帕-CAR /β-CD的水凝胶HBP的体外释放评估还研究了在pH 7.6。因此,κ-CAR /β-CD / HBP水凝胶被成功地用作阳离子化棉织物澄清化合物。获得的数据强调,阳离子化棉织物表面沉积并用卡帕-CAR /β-CD / HBP的膜穿透。另外,处理过的阳离子化织物的抗微生物活性对细菌和真菌在较低浓度的HBP生产高度抑制区的许多物种评价。因此,与卡伯-CAR /β-CD处理的阳离子化棉织物/ HBP具有在伤口愈合织物的高潜力。 (c)2019 Elsevier B.v.保留所有权利。

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