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Superabsorbent curdlan-based foam dressings with typical hydrocolloids properties for highly exuding wound management

机译:基于超吸收性凝乳的泡沫敷料,具有典型的水胶体特性,用于高度渗出伤口管理

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Effective management of chronic wounds with excessive exudate may be challenging for medical doctors. Over the years, there has been an increasing interest in the engineering of biomaterials, focusing on the development of polymer-based wound dressings to accelerate the healing of exuding wounds. The aim of this study was to use curdlan, which is known to support wound healing, as a base for the production of superabsorbent hybrid biomaterials (curdlan/agarose and curdlan/chitosan) with the intended use as wound dressings for highly exuding wound management. To evaluate the biomedical potential of the fabricated curdlan-based biomaterials, they were subjected to a comprehensive assessment of their microstructural, physicochemical, and biological properties. The obtained results showed that foam-like biomaterials with highly porous structure (66-77%) transform into soft gel after contact with the wound fluid, acting as typical hydrocolloid dressings. Novel biomaterials have the superabsorbent ability (1 g of the biomaterial absorbs approx. 15 ml of exudate) with horizontal wicking direction while keeping dry edges, and show water vapor transmission rate of approx. 1700-1800 g/m(2)/day which is recommended for optimal wound healing. Moreover, they are stable in the presence of collagenases, but prone to biodegradation in lysozyme solution (simulated infected wound environment). Importantly, the developed biomaterials are non-toxic and their surface hinders fibroblast attachment, which is essential during dressing changes to avoid damage to newly formed tissues in the wound bed. All mentioned features make the developed biomaterials promising candidates to be used as the wound dressings for the management of chronic wounds with moderate to high exudate.
机译:有效管理具有过度渗出物的慢性伤口可能对医生有挑战性。多年来,对生物材料的工程迈出了越来越多的兴趣,重点是高分子伤口敷料的发展,以加速渗出伤口的愈合。本研究的目的是使用Curdlan,该目的是支持伤口愈合的基础,作为生产超吸收性杂交生物材料(Curdlan / Agarose和Curdlan /壳聚糖),其用作伤口敷料的预期用途,用于高度渗出伤口管理。为了评估制造的基于库司的生物材料的生物医学潜力,对其微观结构,物理化学和生物学性质进行全面评估。所得结果表明,在与卷绕流体接触后,具有高多孔结构(66-77%)的泡沫状生物材料(66-77%)转化为软凝胶,作用为典型的水胶体敷料。新型生物材料具有超吸收性能力(1g生物材料的吸收剂,具有水平芯吸方向,同时保持干边缘,并显示水蒸气透射率约。 1700-1800克/米(2)/日,推荐用于最佳伤口愈合。此外,它们在胶原蛋白酶的存在下稳定,但易于在溶菌酶溶液中生物降解(模拟感染的伤口环境)。重要的是,开发的生物材料是无毒的,其表面阻碍成纤维细胞附着,这在敷料变化过程中是必需的,以避免伤口床中的新形成的组织损伤。所有提到的特征使开发的生物材料承诺候选人用作伤口敷料,用于管理慢性伤口,中度至高渗出物。

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