首页> 外文期刊>Journal of artificial organs: The official journal of the Japanese Society for Artificial Organs >Development of novel wound dressing composed of hyaluronic acid and collagen sponge containing epidermal growth factor and vitamin C derivative.
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Development of novel wound dressing composed of hyaluronic acid and collagen sponge containing epidermal growth factor and vitamin C derivative.

机译:由透明质酸和胶原蛋白海绵组成的新型伤口敷料的开发,所述胶原蛋白海绵含有表皮生长因子和维生素C衍生物。

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摘要

This study was designed to investigate the potential of a wound dressing composed of hyaluronic acid (HA) and collagen (Col) spongy sheet containing epidermal growth factor (EGF) and vitamin C derivative (VC). High-molecular-weight HA aqueous solution, hydrolyzed low-molecular-weight HA aqueous solution and heat-denatured Col aqueous solution were mixed, followed by freeze-drying to obtain a spongy sheet. Cross-linkage between Col molecules was induced by UV irradiation of the spongy sheet (C-wound dressing). In a similar manner, three types of spongy sheet containing EGF (EGF-wound dressing), containing VC (VC-wound dressing) or containing EGF and VC (EGF·VC-wound dressing) were prepared by freeze-drying the mixed solution containing the specified components. Cytokine production by fibroblasts was assessed in a wound surface model using a fibroblast-incorporating Col gel sheet (cultured dermal substitute; CDS). CDS was elevated to the air-medium interface, onto which each wound dressing was placed and cultured for 7 days. Fibroblasts in CDS covered with EGF-wound dressing released 3.6 times more VEGF and 3.0 times more HGF, as compared with the C-wound dressing. Fibroblasts in CDS covered with EGF·VC-wound dressing released 4.2 times more VEGF and 6.0 times more HGF, as compared with the C-wound dressing. The efficacy of these wound dressings was evaluated in animal tests using diabetic mice. Each wound dressing was applied to a full-thickness skin defect on the dorsal area measuring 1.5 × 2.0 cm. After 1 week of application, wound conditions were evaluated histologically. The EGF·VC-wound dressing more effectively promoted granulation tissue formation associated with angiogenesis, as compared with other wound dressings.
机译:这项研究旨在调查由透明质酸(HA)和胶原蛋白(Col)海绵表层组成的伤口敷料的潜力,其中含有表皮生长因子(EGF)和维生素C衍生物(VC)。将高分子量HA水溶液,水解的低分子量HA水溶液和热变性的Col水溶液混合,然后冷冻干燥,得到海绵状片。 Col分子之间的交联是通过海绵片的紫外线照射(C伤口敷料)诱导的。以类似的方式,通过将含有以下物质的混合溶液冷冻干燥,制备了三种含有EGF(EGF-伤口敷料),含有VC(VC-伤口敷料)或含有EGF和VC(EGF·VC-伤口敷料)的海绵片。指定的组件。使用掺有成纤维细胞的Col凝胶片(培养的真皮替代物; CDS)在伤口表面模型中评估了成纤维细胞产生的细胞因子。将CDS升至空气-介质界面,在其上放置每种伤口敷料并培养7天。与C伤口敷料相比,覆盖有EGF伤口敷料的CDS中的成纤维细胞释放的VEGF和HGF分别多出3.6倍和3.0倍。与C伤口敷料相比,覆盖有EGF·VC伤口敷料的CDS中的成纤维细胞释放的VEGF和HGF分别多出4.2倍和6.0倍。在使用糖尿病小鼠的动物试验中评估了这些伤口敷料的功效。将每种伤口敷料均涂在背部面积为1.5×2.0 cm的全层皮肤缺损处。施用1周后,通过组织学评估伤口状况。与其他伤口敷料相比,EGF·VC伤口敷料可更有效地促进与血管生成相关的肉芽组织形成。

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