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Wang YUAN (苑旺), Lili XU (徐立丽), Ping HUANG (黄平), Xiaoqiang AN (安晓强), Lili CUI (崔黎丽), Jian JIANG (江键). Inhibition effects of a negative electret 5-FU patch on the growth of a hypertrophic scar[J]. Plasma Science and Technology, 2018, 20(5): 54011-054011. DOI: 10.1088/2058-6272/aaa88b
Citation: Wang YUAN (苑旺), Lili XU (徐立丽), Ping HUANG (黄平), Xiaoqiang AN (安晓强), Lili CUI (崔黎丽), Jian JIANG (江键). Inhibition effects of a negative electret 5-FU patch on the growth of a hypertrophic scar[J]. Plasma Science and Technology, 2018, 20(5): 54011-054011. DOI: 10.1088/2058-6272/aaa88b

Inhibition effects of a negative electret 5-FU patch on the growth of a hypertrophic scar

  • In this study, the hypertrophic scar (HS) model in rats was established. 5-fluorouracil (5-FU) patch, -1000 V and -2000 V polypropylene (PP) electret 5-FU patches were prepared and applied onto the wound. The in vitro permeation experiment was performed using the Franz diffusion cell system to determine the permeation cumulative amount and retention amount of 5-FU through/in scar skin. The inhibition effect of negative electret on growth of HS was studied by hematoxylin-eosin (HE) staining, Masson staining and the immunohistologicall methods. The permeation study indicated that a negative electret could enhance the permeation and retention of 5-FU through and in scar skin respectively. HE staining and Masson staining indicated a better effect for -1000 V and -2000 V electret 5-FU patches on HS inhibition after 28 d post-wounding compared with 5-FU patch. The immunohistological study showed much more reduced expressions of collegan type I, collegan type III, TGF-β1 and HSP47 in scar tissue after application of negative electret 5-FU patches than those of 5-FU patch. A negative electret 5-FU patch may be advantageous for HS treatment.
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