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首页> 外文期刊>Journal of Photochemistry and Photobiology, B. Biology: Official Journal of the European Society for Photobiology >Enhanced wound healing activity of PEG/PCL copolymer combined with bioactive nanoparticles in wound care after anorectal surgery: Via bio-inspired methodology
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Enhanced wound healing activity of PEG/PCL copolymer combined with bioactive nanoparticles in wound care after anorectal surgery: Via bio-inspired methodology

机译:PEG / PCL共聚物的增强伤口愈合活性与生物活性纳米粒子联合肛门外科手术后的生物活性纳米粒子:通过生物启发方法

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Over the past decade, the implementation of the novel nanomaterials in the field of nanotechnology for the biomedical applications is essential for the comfort factors such as non-toxicity and biocompatibility in the human biological systems. In this context, a novel synthesis was worked out through bacterial species (citrobacter braakii) in the biofabrication of bioactive gold nanoparticles (Au NPs) for the wound healing management. The biosynthesized Au NPs were further modified and improved its compatibility with polyethylene glycol (PEG) and polycaprolactone (PCL) for formed as Au-PEG/PCL nanocomposites to extent the activity in wound healing application. The combination of bioactive nanoparticles with biocompatible polymeric substances has been upsurges the activity of nanoparticles due to the strong interaction of polymers. The biofabricated Au NPs and its nanocomposites were characterized using UV-Vis, FT-IR, XRD, DLS and TEM studies. Further, the prepared materials were tested in a wound healing model of rat with the wound of 22 mm size. The found results are demonstrated that the improved materials are highly active in growth of keratinocytes proliferation and simultaneously reduce scar formation. After 15 days observations, the wound were almost completely healed by the developed Au- PEG/PCL nanocomposites material which was confirmed by Masson's Trichrome staining histological images and antibacterial efficacy was displayed by the CLSM images. Notably, polymeric Au-PEG/ PCL nanocomposites showed no inflammation on the wounded portion and internal implantation on rats thus evidencing it as a safe and biologically very active wound healing agent.
机译:在过去十年中,生物医学应用领域的新型纳米材料的实施对于人体生物系统中的无毒和生物相容性等舒适因素至关重要。在这种情况下,通过对伤口愈合管理的生物活性金纳米粒子(Au NPS)的生物结缔组织的细菌物种(植物杆菌Braakii)来制定新的合成。进一步改性生物合成的Au NPS,并改善了与聚乙二醇(PEG)和聚己内酯(PCL)相容的相容性,用于在伤口愈合应用中的活性范围内形成。由于聚合物的强相互作用,具有生物相容性聚合物具有生物相容性聚合物物质的生物活性纳米颗粒的组合已经升高了纳米颗粒的活性。使用UV-Vis,FT-IR,XRD,DLS和TEM研究表征生物亚辅AU NPS及其纳米复合材料。此外,在大鼠伤口的伤口愈合模型中测试制备的材料,伤口为22mm。结果证明了改进的材料在角质形成细胞增殖的生长中具有高度活性,同时减少瘢痕形成。在15天观察后,伤口几乎完全由显影的Au-PEG / PCL纳米复合材料材料愈合,该纳米复合材料材料通过Masson的三色形式染色组织学图像证实,并且CLSM图像显示抗菌效能。值得注意的是,聚合物AU-PEG / PCL纳米复合材料在受伤部分和大鼠上的内部注入没有炎症,从而证明其作为一种安全和生物学上非常活跃的伤口愈合剂。

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