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首页> 外文期刊>Wound repair and regeneration: official publication of the Wound Healing Society [and] the European Tissue Repair Society >Enhanced healing of mitomycin C-treated healing-impaired wounds in rats with hydrosheets composed of chitin/chitosan, fucoidan, and alginate as wound dressings.
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Enhanced healing of mitomycin C-treated healing-impaired wounds in rats with hydrosheets composed of chitin/chitosan, fucoidan, and alginate as wound dressings.

机译:增强治疗的丝裂霉素C-treatedhealing-impaired伤口与hydrosheets老鼠摘要研究由甲壳素/壳聚糖,海藻酸盐伤口敷料。

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摘要

To create a moist environment for rapid wound healing, a hydrosheet composed of alginate, chitin/chitosan, and fucoidan (ACF-HS) has been developed as a functional wound dressing. The aim of this study was to evaluate the accelerating effect of ACF-HS on wound healing for rat mitomycin C-treated healing-impaired wounds. Full-thickness skin defects were made on the back of rats and mitomycin C was applied onto the wound for 10 minutes to prepare a healing-impaired wound. After thoroughly washing out the mitomycin C, ACF-HS was applied to the healing-impaired wounds. The rats were later euthanized and histological sections of the wounds were prepared. The histological examinations showed significantly advanced granulation tissue and capillary formations in the healing-impaired wounds treated with ACF-HS on days 7 and 14, in comparison with that in alginate fiber (Kaltostat), hydrogel wound dressing (DuoACTIVE), and nontreatment (negative control). Furthermore, in cell culture studies, ACF-HS-absorbed serum and fibroblast growth factor-2 was found to be proliferative for fibroblasts and endothelial cells, respectively, and ACF-HS-absorbed serum was found to be chemoattractive for fibroblasts. However, our results may not be strictly comparable with general healing-impaired wound models in humans because of the cell damage by mitomycin C. In addition, more biocompatibility studies of fucoidan are essential due to the possibility of renal toxicity.
机译:创建一个潮湿的环境快速伤口hydrosheet由海藻酸治疗,甲壳素/壳聚糖和(ACF-HS)开发成一个功能的伤口敷料。本研究旨在评估加速老鼠ACF-HS对伤口愈合的影响丝裂霉素C-treated healing-impaired伤口。背面全层皮肤缺损老鼠和丝裂霉素C的应用上伤口10分钟准备healing-impaired伤口。丝裂霉素C, ACF-HS被应用到healing-impaired伤口。安乐死和组织学部分伤口被准备。检查显示显著的先进肉芽组织和毛细血管的形成ACF-HS healing-impaired伤口治疗在天7和14日的价格相比海藻酸纤维(Kaltostat),水凝胶的伤口敷料(DuoACTIVE)和:(负的控制)。ACF-HS-absorbed血清和纤维母细胞生长因子2被发现增殖成纤维细胞和内皮细胞,分别和ACF-HS-absorbed血清被发现chemoattractive成纤维细胞。结果可能不是严格意义上的可比性人类一般healing-impaired伤口模型因为丝裂霉素c的细胞损伤此外,更多的生物相容性研究摘要研究的可能性至关重要肾毒性。

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