舒崇湘,楼淑芬,程天民,李树楠,冉新泽.γ射线照射对两种组织修复细胞的直接效应与W11-a12的作用[J].中华放射医学与防护杂志,2002,22(3):173-175
γ射线照射对两种组织修复细胞的直接效应与W11-a12的作用
Effects of γ irradiation on rate of wound healing in a scored confluent monolayer of cells and the repair-promoting role of W11-a12
投稿时间:2001-11-19  
DOI:
中文关键词:  放射损伤  创伤愈合  成纤维细胞  血管内皮细胞  W11-a12
英文关键词:Radiation injury  Wound healing  Fibroblast  Vascular endothelial cells  W11-a12
基金项目:国家重点基础研究发展规划“973”专项经费资助项目(G1999054205);重庆市科委院士基金资助项目(985081)
作者单位
舒崇湘 40038重庆, 第三军医大学预防医学系全军复合伤研究所 
楼淑芬 40038重庆, 第三军医大学预防医学系全军复合伤研究所 
程天民 40038重庆, 第三军医大学预防医学系全军复合伤研究所 
李树楠 云南大理医学院药理学教研室 
冉新泽 40038重庆, 第三军医大学预防医学系全军复合伤研究所 
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中文摘要:
      目的 探讨电离辐射是否对成纤维细胞和血管内皮细胞的增殖游走功能具有直接抑制作用及其抑制程度,以及W11-a12的促愈作用。方法 采用培养的单层3-T3细胞(小鼠胚胎FBs株)和培养的单层ECV304细胞(人脐静脉内皮细胞株)划痕伤口模型进行离体照射,观察痕隙闭合速度。结果 在6Gy照射后培养的单层3T3细胞与单层LECV304细胞划痕“伤口”闭合明显延缓。单层3T3细胞在伤后10h对照组伤口完全闭合,而照射组仅闭合77%;照射组单层ECV304细胞在伤后12h仅为对照组的836%.W11-a12用药组对单层3T3细胞与ECV304细胞“划痕”伤口的闭合均有促进作用。结论 放射损伤对成纤维细胞与血管内皮细胞的增殖游走有直接抑制作用,这是伤口难愈的重要原因之一。促进伤口细胞游走和增殖是W11-a12作用的一个重要途径。
英文摘要:
      Objective To investigate the effects of ionizing radiation on healing rate of experimental wound in a scored confluent monolayer of fibroblasts and vascular endothelial cells and the repair promoting effect of W11-a12.Methods The healing rates of the experimental wound in a scored confluent monolayer of 3T3 cells or ECV304 cells irradiated with 6 Gy 60 Co gamma rays were assayed by measuring the width of the wound.Results After irradiation,the closure of scored wounds both in a confluent monolayer of 3T3 cells and in that of ECV304 cells was significantly delayed.The scored wound in a confluent monolayer of 3T3 cells was completely closed in the sham irradiation group,but it was only 77% in the irradiation group at the tenth hour post wounding.The healing rate of the scored wound in a confluent monolayer of irradiated ECV304 cells was 83.6% of that in the sham irradiation group W11-a12 had good promoting action on the closure of wounds in scored confluent monolayers of these two kinds of cells.Conclusion The direct inhibitory effects of irradiation on the proliferating and migrating capacity of both fibroblasts and vascular endothelial cells might be one of the important reasons for the delay of healing in irradiation impaired wounds and W11-a12 could promote healing of irradiation impaired wound by means of enhancing cell migratation and proliferation directly.
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