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Wound-healing evaluation of entrapped active agents into protein microspheres over cellulosic gauzes

机译:纤维素纱布上包裹的活性剂进入蛋白质微球的伤口愈合评估

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摘要

The use of active ingredients in wound management have evolved alongside the pharmaceutical agents and dressings used to deliver them. However, the development of gauzes, dressings with specific properties, still remains a challenge for several medical applications. A new methodology for the controlled release of active components for the healing of burn wounds is proposed herein. Cotton and non-woven bandages have been cationised to promote the attachment of protein microspheres. The active agents, piroxicam and vegetable oil, were entrapped into the microspheres using ultrasound energy. Active agents were released from the microspheres by a change in pH. Wound healing was assessed through the use of standardised burn wounds induced by a cautery in human full-thickness skin equivalents (EpidermFT). The best re-epithelialisation and fastest wound closure was observed in wounds treated with proteinaceous microspheres attached to gauzes, after six days of healing, in comparison with commercial collagen dressing and other controls. Furthermore, the ability of these materials to reduce the inflammation process, together with healing improvement, makes these biomaterials suitable for wound-dressing applications.
机译:活性成分在伤口处理中的使用已与用于递送它们的药剂和敷料一起发展。然而,纱布,具有特定性质的敷料的开发对于多种医学应用仍然是挑战。本文提出了用于控制活性成分的释放以治愈烧伤伤口的新方法。棉花和非织造绷带已被阳离子化,以促进蛋白质微球的附着。使用超声能量将活性剂吡罗昔康和植物油截留在微球中。通过改变pH,活性剂从微球中释放出来。通过烧灼人全层皮肤当量(EpidermFT)诱发的标准化烧伤伤口来评估伤口愈合情况。与商业胶原蛋白敷料和其他对照相比,在愈合六天后,用附着在纱布上的蛋白质微球处理的伤口观察到最佳的上皮再形成和最快的伤口闭合。此外,这些材料减少炎症过程的能力以及愈合的改善,使得这些生物材料适合伤口敷料应用。

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