首页> 中文期刊> 《军事医学研究:英文版》 >Beneficial effects of a novel shark-skin collagen dressing for the promotion of seawater immersion wound healing

Beneficial effects of a novel shark-skin collagen dressing for the promotion of seawater immersion wound healing

         

摘要

Background: Wounded personnel who work at sea often encounter a plethora of difficulties. The most important of these difficulties is seawater immersion. Common medical dressings have little effect when the affected area is immersed in seawater, and only rarely dressings have been reported for the treatment of seawater-immersed wounds. The objective of this study is to develop a new dressing which should be suitable to prevent the wound from seawater immersion and to promote the wound healing.Methods: Shark skin collagen(SSC) was purified via ethanol de-sugaring and de-pigmentation and adjusted for p H. A shark skin collagen sponge(SSCS) was prepared by freeze-drying. SSCS was attached to an anti-seawater immersion polyurethane(PU) film(SSCS+PU) to compose a new dressing. The biochemical properties of SSC and physicochemical properties of SSCS were assessed by standard methods. The effects of SSCS and SSCS+PU on the healing of seawaterimmersed wounds were studied using a seawater immersion rat model. For the detection of SSCS effects on seawaterimmersed wounds, 12 SD rats, with four wounds created in each rat, were divided into four groups: the 3 rd day group, 5 th day group, 7 th day group and 12 th day group. In each group, six wounds were treated with SSCS, three wounds treated with chitosan served as the positive control, and three wounds treated with gauze served as the negative control. For the detection of the SSCS+PU effects on seawater-immersed wounds, 36 SD rats were divided into three groups: the gauze(GZ)+PU group, chitosan(CS)+PU group and SSCS+PU group, with 12 rats in each group, and two wounds in each rat. The wound sizes were measured to calculate the healing rate, and histomorphology and the immunohistochemistry of the CD31 and TGF-β expression levels in the wounded tissues were measured by standard methods.Results: The results of Ultraviolet-visible(UV-vis) spectrum, Fourier-transform infrared(FTIR) spectrum, circular dichroism(CD) spectra, sodium dodecyl sulfate polyacrylamide gel electrophoresis(SDS-PAGE), and amino acid composition analyses of SSC demonstrated that SSC is type I collagen. SSCS had a homogeneous porous structure of approximately 200μm, porosity rate of 83.57%±2.64%, water vapor transmission ratio(WVTR) of 4500 g/m2, tensile strength of 1.79±0.41 N/mm, and elongation at break of 4.52%±0.01%. SSCS had significant beneficial effects on seawater-immersed wound healing. On the 3 rd day, the healing rates in the GZ negative control, CS positive control and SSCS rats were 13.94%±5.50%, 29.40%±1.10% and 47.24%±8.40%, respectively. SSCS also enhanced TGF-in the initial stage of the healing period. The SSCS+PU dressing effectively protected woundsβ and CD31 expression from seawater immersion for at least 4 h, and accelerated re-epithelialization, vascularization and granulation formation of seawater-immersed wounds in the earlier stages of wound healing, and as well as significantly promoted wound healing. The SSCS+PU dressing also enhanced expression of TGF-n and gauze dressings.β and CD31. The effects of SSCS and SSCS+PU were superior to those of both the chitosaConclusion: SSCS has significant positive effects on the promotion of seawater-immersed wound healing, and a SSCS+PU dressing effectively prevents seawater immersion, and significantly promotes seawater-immersed wound healing.

著录项

  • 来源
    《军事医学研究:英文版》 |2018年第2期|P.117-128|共12页
  • 作者单位

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 ChinaCollege of Food Science and Technology Shanghai Ocean University Shanghai 201306 China;

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 ChinaCollege of Food Science and Technology Shanghai Ocean University Shanghai 201306 China;

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 ChinaResearch Center of TCM Processing Technology Zhejiang Chinese Medical University Hang Zhou 311401 China;

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 China;

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 China;

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 China;

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 ChinaCollege of Food Science and Technology Shanghai Ocean University Shanghai 201306 China;

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 ChinaCollege of Food Science and Technology Shanghai Ocean University Shanghai 201306 China;

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 China;

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 China;

    The PLA Key Laboratory of Biological Effect and Medical Protection on Naval Vessel Special Environment Naval Medical Research Institute Shanghai 200433 China;

  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 生物材料学;
  • 关键词

    Anti-seawater immersion dressing; Shark skin collagen; Seawater immersion wound; Wound healing;

    机译:防海水浸渍敷料;鲨鱼皮胶原蛋白;海水浸入伤口;伤口愈合;
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