首页> 外文期刊>Iranian Journal of Basic Medical Sciences >N-acetylcysteine-loaded electrospun mats improve wound healing in mice and human fibroblast proliferation in vitro: a potential application of nanotechnology in wound care
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N-acetylcysteine-loaded electrospun mats improve wound healing in mice and human fibroblast proliferation in vitro: a potential application of nanotechnology in wound care

机译:N-乙酰半胱氨酸的电纺垫改善小鼠伤口愈合和体外的人成纤维细胞增殖:纳米技术在伤口护理中的潜在应用

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Objective(s): N-acetylcysteine (NAC) has gained attention recently in dermatology as a unique anti-oxidant. In light of progress in nanotechnological methods, it was hypothesized that loading NAC onto nanofibers would positively affect skin wound healing. The objective of this study was to fabricate NAC-loaded electrospun mats and test their effect on wound healing in vivo and in vitro . Materials and Methods: Polyvinyl alcohol (PVA)-based mats loaded with NAC at three concentrations were electrospun and characterized in terms of physicochemical properties and drug release profile. Human fibroblast cells ( in vitro ) and mouse full-thickness skin wounds ( in vivo ) were treated with mats for 5 and 14 days, respectively. Wound area, tissue histopathology, fibroblast proliferation and cellular oxidative state were evaluated. Results: Mats containing 5% PVA/NAC showed thinner fibers with suitable physicochemical properties and a sustained drug release profile. PVA/NAC (5%) mats enhanced fibroblast proliferation and attachment in vitro . The mats resulted in significant wound closure with high levels of re-epithelialization and collagen fiber synthesis on day 14 post-surgery in vivo. The mats also reduced granulation tissue and edematous stroma to a higher extent. These findings were accompanied by a significant decrease in tissue lipid peroxidation and higher superoxide dismutase activity, which may explain how NAC improved wound healing. Conclusion: We propose an NAC-loaded nanofibrous mat that takes the advantage of a porous nanoscaffold structure to release NAC in a sustained manner. This mat may be a promising candidate for further clinical evaluation.
机译:目的是:N-乙酰半胱氨酸(NAC)最近在皮肤科中获得了一种独特的抗氧化剂。鉴于纳米技术方法的进展,假设将NAc加载到纳米纤维上会产生正影响皮肤伤口愈合。本研究的目的是制造NAC负载的电纺垫,并测试其对体内和体外伤口愈合的影响。材料和方法:在三种浓度下加入NAC的聚乙烯醇(PVA)基于NAC的垫子肌散,并表征物理化学性质和药物释放曲线。人的成纤维细胞(体外)和小鼠全厚的皮肤伤口(体内)分别用垫5和14天处理。评估伤口区域,组织组织病理学,成纤维细胞增生和细胞氧化态。结果:含有5%PVA / NAC的垫子显示出具有合适的物理化学性质和持续的药物释放曲线的较薄纤维。 PVA / NAC(5%)垫增强成纤维细胞增殖和体外附着。垫子导致具有高水平再上皮化和胶原纤维合成的显着伤口闭合,在第14天在体内手术后14天。垫子还将造粒组织和水肿基质降低至更高的程度。这些发现伴随着组织脂质过氧化和更高的超氧化物歧化酶活性的显着降低,这可以解释NAC如何改善伤口愈合。结论:我们提出了一种加载的NAC纳米纤维垫,其利用多孔纳米支导结构以持续的方式释放NAC。该垫子可能是进一步临床评价的有希望的候选者。

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