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不同分割剂量γ射线照射小鼠切除伤口中姜黄素对伤口修复的加速作用。

Acceleration of wound repair by curcumin in the excision wound of mice exposed to different doses of fractionated γ radiation.

机构信息

Department of Zoology, Mizoram University, Aizawl 796 004, Mizoram, India.

出版信息

Int Wound J. 2012 Feb;9(1):76-92. doi: 10.1111/j.1742-481X.2011.00848.x. Epub 2011 Aug 31.

Abstract

Fractionated irradiation (IR) before or after surgery of malignant tumours causes a high frequency of wound healing complications. Our aim was to investigate the effect of curcumin (CUM) on the healing of deep excision wound of mice exposed to fractionated IR by mimicking clinical conditions. A full-thickness dermal excision wound was created on the shaved dorsum of mice that were orally administered or not with 100 mg of CUM per kilogram body weight before partial body exposure to 10, 20 or 40 Gy given as 2 Gy/day for 5, 10 or 20 days. The wound contraction was determined periodically by capturing video images of the wound from day 1 until complete healing of wounds. Fractionated IR caused a dose-dependent delay in the wound contraction and prolonged wound healing time, whereas CUM administration before fractionated IR caused a significant elevation in the wound contraction and reduced mean wound healing time. Fractionated IR reduced the synthesis of collagen, deoxyribonucleic acid (DNA) and nitric oxide (NO) at different post-IR times and treatment of mice with CUM before IR elevated the synthesis of collagen, DNA and NO significantly. Histological examination showed a reduction in the collagen deposition, fibroblast and vascular densities after fractionated IR, whereas CUM pre-treatment inhibited this decline significantly. Our study shows that CUM pre-treatment accelerated healing of irradiated wound and could be a substantial therapeutic strategy in the management of irradiated wounds.

摘要

分次照射(IR)在恶性肿瘤的手术前后都会导致伤口愈合并发症的高发。我们的目的是研究姜黄素(CUM)对模拟临床条件下接受分次 IR 的小鼠深层切除伤口愈合的影响。在剃光的背部小鼠的全层真皮切除伤口上,在部分身体暴露于 10、20 或 40 Gy 之前,每天给予 2 Gy,连续 5、10 或 20 天,通过对伤口进行定期拍摄视频图像来确定伤口收缩情况。从第 1 天开始直到伤口完全愈合。分次 IR 导致伤口收缩呈剂量依赖性延迟,并延长了伤口愈合时间,而在分次 IR 前给予 CUM 处理则导致伤口收缩明显增加,并缩短了平均伤口愈合时间。分次 IR 在不同的 IR 后时间点降低了胶原蛋白、脱氧核糖核酸(DNA)和一氧化氮(NO)的合成,而 IR 前用 CUM 处理的小鼠则显著提高了胶原蛋白、DNA 和 NO 的合成。组织学检查显示,分次 IR 后胶原蛋白沉积、成纤维细胞和血管密度减少,而 CUM 预处理则显著抑制了这种下降。我们的研究表明,CUM 预处理可加速照射伤口的愈合,可能是照射伤口管理的一种重要治疗策略。

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