首页> 外文期刊>Advances in skin & wound care >A Histologic Perspective on Electrical and Thermal Burn-Injured Human Skin
【24h】

A Histologic Perspective on Electrical and Thermal Burn-Injured Human Skin

机译:关于电气和热灼伤的人体皮肤的组织学视角

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

OBJECTIVE: To analyze specific spectroscopic (FT-Raman) and thermal (limiting oxygen index) aspects of skin samples exposed to electrical injury compared with thermal injury. METHODS: An observational case-control study was conducted at the Dr Stanislaw Sakiel Center for Burns Treatment in Siemianowice, Silesia, Poland. A scanning electron microscope was used to diagnose and illustrate the topography of skin samples from electrical and thermal burns and the morphologic effects on damaged versus undamaged skin surfaces. In particular, researchers attempted to detect spectroscopic and thermal changes at the molecular level, namely, specific biomarkers of tissue degeneration and their regeneration under the influence of the applied modifiers (antioxidants and orthosilicic acid solutions). RESULTS: Modification with l-ascorbic acid and hydrogel of orthosilicic acid caused an increase in the intensity of the amide I Raman peaks, whereas modification with sodium ascorbate and orthosilicic acid resulted in the separation of the band protein side chains (1,440-1,448 cm(-1)), which is a part of tissue regeneration. The best result was obtained when the skin was treated with 7% orthosilicic acid (limiting oxygen index, 26%). CONCLUSIONS: Antioxidant treatment may be advantageous in minimizing injury in patients with thermal burns but not always in electrical burns.
机译:目的:与热损伤相比,分析特异性光谱(FT-拉曼)和热(限制氧指数)对电损伤暴露于电损伤的热(限制氧指数)方面。方法:在波兰斯莱西亚,西里西亚州斯蒂西米斯伯恩斯·斯卡伊尔中心进行了一个观察病例对照研究。扫描电子显微镜用于诊断和说明来自电气和热烧伤的皮肤样品的形貌,并且对损坏的形态作用与未损坏的皮肤表面。特别是,研究人员试图在分子水平上检测光谱和热变化,即组织变性的特异性生物标志物及其在施加的改性剂(抗氧化剂和硅酸溶液)的影响下的再生。结果:用L-抗坏血酸和外硅酸水凝胶改性引起酰胺I拉曼峰的强度增加,而用抗坏血酸钠和硅酸的改性导致带蛋白侧链的分离(1,440-1,448cm( -1)),这是组织再生的一部分。当皮肤用7%酸硅酸(限制氧指数,26%)处理皮肤时获得了最佳结果。结论:抗氧化治疗可能是有利的,最大限度地减少热灼伤患者的损伤,但并不总是在电烧伤中。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号