首页> 外文期刊>Wound repair and regeneration: official publication of the Wound Healing Society [and] the European Tissue Repair Society >Nanotechnology promotes the full-thickness diabetic wound healing effect of recombinant human epidermal growth factor in diabetic rats.
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Nanotechnology promotes the full-thickness diabetic wound healing effect of recombinant human epidermal growth factor in diabetic rats.

机译:纳米技术促进了全层糖尿病伤口愈合重组的影响人类表皮生长因子在糖尿病大鼠。

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We utilized a modified double-emulsion method with poly(lactic-co-glycolic acid) as the carrier to prepare recombinant human epidermal growth factor (rhEGF) nanoparticles. The morphology of the nanoparticles was detected by a transmission electron microscope. The particle size distribution was measured by a laser analyzer with a zeta potential meter. Enzyme-linked immunosorbent assays were performed to determine the rhEGF encapsulation efficiency and release model, and the proliferation of the mouse fibroblasts was analyzed by the MTT method. Diabetic rats with full-thickness wounds were divided into four groups according to different treatments: rhEGF nanoparticles, rhEGF stock solution, empty nanoparticles, and phosphate-buffered saline. Photographs were taken after the treatments to calculate the wound healing rates, and the granulation tissue of the wounds was sampled for pathologic slides. Proliferating cell nuclear antigen was assayed by immunohistochemistry. Our results showed that the rhEGF nanoparticles were around 193.5 nm (diameter), and the particle size distribution was uniform and dispersible. The encapsulation efficiency was 85.6% and rhEGF release lasted 24 hours. Compared with other groups, the rhEGF nanoparticles promoted the highest level of fibroblast proliferation, and this group showed the fastest healing rate. The number of proliferating cell nuclear antigen positive cells in the rhEGF nanoparticles group was higher than the other groups. We concluded that controlled release of rhEGF encapsulated in the nanoparticles enhanced rhEGF effects to stimulate cell proliferation and shorten the wound healing time.
机译:我们使用一个修改double-emulsion方法保利(lactic-co-glycolic酸)为载体准备重组人表皮生长因子(rhEGF)纳米颗粒。纳米粒子被传输电子显微镜。分布是衡量激光分析仪电动电势计。免疫分析法进行确定rhEGF封装效率和释放模型和鼠标的扩散成纤维细胞MTT法进行了分析。糖尿病大鼠全层的伤势根据不同分成四组治疗:rhEGF纳米颗粒,rhEGF股票解决方案,空纳米颗粒,磷酸盐。治疗后计算出的伤口愈合率,和肉芽组织伤口是采样病理幻灯片。增殖细胞核抗原化验了免疫组织化学。rhEGF约193.5 nm纳米颗粒(直径)和粒度分布是均匀和分散。效率为85.6%,rhEGF释放持续了24个小时。纳米颗粒提升的最高水平成纤维细胞增殖,这组显示最快的愈合率。增殖细胞核抗原阳性细胞rhEGF纳米颗粒组高于另一组。释放rhEGF封装的纳米粒子增强rhEGF刺激的影响细胞增殖和缩短伤口愈合时间。

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