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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >The effect of a self-assembling peptide nanofiber scaffold (peptide) when used as a wound dressing for the treatment of deep second degree burns in rats.
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The effect of a self-assembling peptide nanofiber scaffold (peptide) when used as a wound dressing for the treatment of deep second degree burns in rats.

机译:自组装肽纳米纤维支架(肽)用作伤口敷料用于治疗大鼠深第二度烧伤的效果。

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摘要

RADARADARADARADA (RADA16-I) peptide, consisting of 16 alternating hydrophobic and hydrophilic (also alternating negative and positive charges) amino acids, forms extremely stable beta-pleated sheet structure and then self-assembles into nanofibers to produce high-order interwoven nanofiber scaffold hydrogel. To investigate its therapeutic effects, a burn model of partial thickness-deep dermal injury (the deep second degree burns) was performed at the dorsal skin of female Sprague-Dawley rats with an electrical scalding machine. The wounds treated with either RADA16-I or control materials were carefully examined at morphological, histological and cellular levels. We found that RADA16-I can advance the time of eschar appearance and the time of eschar disappearance both by 3-5 days, and speed up wound contraction by 20-30% compared with contrast groups (chitosan, poly(DL)-lactic acid (PDLA), collagen I and the blank) without obvious edema. Immunohistochemical studies showed that both FGF and EGF were obviously expressed in nascent tissue such as epidermis and glands when wounds were treated with the RADA16-I after injury. When peptide stock solution was diluted from 10 to 0.17 mg/mL, atomic force microscopy (AFM) observation showed that the shape of peptide nanofibers changed from the globular-pieces-clustered filaments with 4.8 +/- 0.38 nm in height, 61.6 +/- 6.10 nm in width and 708 +/- 80.2 nm in length, to general filaments with 1.4 +/- 0.36 nm, 17.5 +/- 1.13 nm and 1108 +/- 184 nm. The nanofiber surface porosity gradually decreased from 49-70% to 12-28%. These characteristics contribute to wound healing by offering an "ideal dressing" moist healing microenvironment and a nanofiber 3D scaffold. These results suggest that the self-assembling peptide might be a promising wound dressing with being simple, effective, and affordable.
机译:RADARADARADARADA(RADA16-I)肽由16个交替的疏水和亲水氨基酸(也交替有负电荷和正电荷)组成,形成极其稳定的β折叠片状结构,然后自组装成纳米纤维以生产高阶交织纳米纤维支架水凝胶。为了研究其治疗效果,使用电烫伤机在雌性Sprague-Dawley大鼠的背部皮肤上进行了部分厚度-深层真皮损伤的烧伤模型(深二度烧伤)。在形态,组织学和细胞水平上仔细检查了用RADA16-I或对照材料处理过的伤口。我们发现,与对比组(壳聚糖,聚(DL)-乳酸)相比,RADA16-I可以将es的出现时间和的消失时间都提前3-5天,并将伤口收缩加快20-30%。 (PDLA),胶原蛋白I和空白)没有明显的水肿。免疫组织化学研究表明,在受伤后用RADA16-I处理伤口时,FGF和EGF在新生组织(如表皮和腺体)中均明显表达。当将肽原液从10稀释至0.17 mg / mL时,原子力显微镜(AFM)观察显示,肽纳米纤维的形状从高度为4.8 +/- 0.38 nm,61.6 + /的球状簇状长丝改变-宽度为6.10 nm,长度为708 +/- 80.2 nm,达到1.4 +/- 0.36 nm,17.5 +/- 1.13 nm和1108 +/- 184 nm的普通灯丝。纳米纤维表面孔隙率从49-70%逐渐降低到12-28%。这些特性通过提供“理想的敷料”,潮湿的愈合微环境和纳米纤维3D支架,有助于伤口愈合。这些结果表明,自组装肽具有简单,有效和可负担的优点,可能是有前途的伤口敷料。

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