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首页> 外文期刊>Polymer engineering and science >Absorbent Polyvinyl Alcohol-Sodium Carboxymethyl Cellulose Hydrogels for Propolis Delivery in Wound Healing Applications
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Absorbent Polyvinyl Alcohol-Sodium Carboxymethyl Cellulose Hydrogels for Propolis Delivery in Wound Healing Applications

机译:吸收聚乙烯醇 - 羧甲基纤维素水凝胶中蜂巢胎儿愈合应用

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摘要

Second degree burns require dressings to heal. The ideal dressing should keep a moist environment, have low cost, be elastic and have a bactericidal effect. The potential of PVA-NaCMC (sodium carboxymethyl cellulose) gels to combine the mechanical and swelling properties of PVA with the flexibility and high water uptake of NaCMC and the antimicrobial characteristics of propolis is investigated. The freeze-thawed gels were characterized by FTIR and DSC. Their swelling behavior, their mechanical response, the delivery of active compounds and their antimicrobial properties were also determined. The main findings of the FTIR analysis were that no chemical bonding occurred between the materials. The DSC analysis revealed that the addition of NaCMC to PVA lowered the PVA crystallinity, as did the addition of propolis, leading to a more deformable gel (as can be observed from the tensile tests results). This also resulted in a higher rate of delivery of active compounds, higher weight loss and higher fluid uptake than comparable PVA-propolis systems, as shown by the swelling tests and by the propolis delivery tests. Samples with 15% propolis content or more inhibited S. aureus colonies with 80% reduction, and are therefore highly absorbent and compliant antimicrobial gels for wound healing. (C) 2017 Society of Plastics Engineers
机译:二级烧伤需要敷料治愈。理想的敷料应该保持潮湿的环境,具有低成本,弹性且具有杀菌效果。研究了PVA-NaCMC(羧甲基纤维素)凝胶的电位,将PVA的机械和溶胀性能与NaCMC的柔韧性和高水分相结合,并进行了蜂胶的抗微生物特征。 FTIR和DSC的特征在于冻融凝胶。还测定了它们的肿胀行为,其机械反应,活性化合物的递送及其抗微生物性质。 FTIR分析的主要发现是材料之间不会发生化学键。 DSC分析表明,添加NaCMC至PVA降低了PVA结晶度,以及添加蜂胶的添加,导致更可变形的凝胶(如可以从拉伸试验结果中观察到)。这也导致较高的活性化合物,更高的重量损失和更高的流体摄取速率,而不是可比较的PVA-propolis系统,如溶胀试验所示和通过蜂胶递送试验所示。样品具有15%蜂胶含量或更多抑制的S.UUREUS菌落,减少80%,因此是伤口愈合的高吸收性和柔顺的抗微生物凝胶。 (c)2017年塑料工程师协会

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