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Fabrication and In-Vivo Study of Micro-Colloidal Zanthoxylum acanthopodium-Loaded Bacterial Cellulose as a Burn Wound Dressing

机译:微胶体Zanthoxylum加载的细菌纤维素的制备和体内研究作为烧伤伤口敷料

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摘要

Bacterial cellulose (BC) is a biopolymer commonly used for wound dressing due to its high biocompatible properties either in-vitro or in-vivo. The three-dimensional fiber structure of BC becomes an advantage because it provides a template for the impregnation of materials in order to improve BC’s properties as a wound dressing, since BC has not displayed any bioactivity properties. In this study, micro-colloidal Zanthoxylum acanthopodium (MZA) fruit was loaded into BC fibers via an in-situ method. Z. acanthopodium is known to have anti-inflammatory, antioxidant and antimicrobial activities that can support BC to accelerate the wound healing process. The FTIR, XRD and SEM analysis results showed that the loading process of MZA and the composite fabrication were successfully carried out. The TGA test also showed that the presence of MZA in BC fibers decreased Tmax composite from BC, from 357.8 to 334.5 °C for BC-MZA3. Other aspects, i.e., water content, porosity, hemocompatibility and histology studies, also showed that the composite could potentially be used as a wound dressing.
机译:细菌纤维素(BC)是由于其在体外或体内的高生物相容性特性而常用的伤口敷料的生物聚合物。 BC的三维光纤结构成为一个优点,因为它提供了用于浸渍材料的模板,以便改善BC作为伤口敷料的性质,因为BC尚未显示任何生物活性特性。在该研究中,通过原位方法将微胶体Zanthoxylum丙烷(MZA)果实加载到BC纤维中。 Z.已知丙基喹啉具有抗炎,抗氧化剂和抗微生物活性,可支持BC加速伤口愈合过程。 FTIR,XRD和SEM分析结果表明,成功进行了MZA和复合制造的加载过程。在TGA测试还表明,MZA在公元前纤维存在下从BC降低的T max复合材料,从357.8至334.5℃的BC-MZA3。其他方面,即含水量,孔隙率,血液相容性和组织学研究,也表明,复合材料可能用作伤口敷料。

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