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Preparing Characterization and Anti-Biofilm Activity of Polymer Fibers Doped by Green Synthesized AgNPs

机译:用绿色合成AgNP掺杂聚合物纤维的制备表征和抗生物膜活性

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摘要

The aim of the work was to prepare polymer matrix composite (PMC) microfibers doped by green synthesized silver nanoparticles (AgNPs). The incorporation of AgNP into the polymer matrix can provide toxic properties to the polymer. Polyvinyl alcohol (PVA) was used as a matrix. AgNPs were synthesized by the green method, where the leaf extract of Rosmarinus officinalis (R. officinalis) was used as a reduction and capping agent. PVA-AgNPs composites were prepared in two ways: the ex situ method (pre-prepared globular AgNPs with a mean diameter of 20 nm were added into polymer matrix) and the in situ method (AgNPs were synthesized in the process of polymer composite preparation; in situ synthesized nanoparticles were a mix of different shapes with a mean diameter of ~100 nm). FTIR (Infrared spectroscopy with Fourier Transformation), UV–vis (Ultraviolet–visible spectroscopy), TEM (Transmission Electron Microscope), EDX (Energy-dispersive X-ray spectroscopy), and SEM (Scanning Electron Microscope) techniques were used for the analysis of nanoparticles and prepared PMCs. Thin layers and microfibers of in situ and ex situ PMCs were prepared. The presence of AgNPs clusters was evident in both PMC thin layers. After electrospinning, the chains of nanoparticles were observed inside the fibers. The distribution of nanoparticles was improved by increasing the AgNPs volume fraction (from 5 vol.% to 20 vol.%). Toxic and antibiofilm activity of AgNPs colloid, pure PVA, and PVA-AgNPs composites against the one-cell green algae Parachlorella kessleri (P. kessleri) was analyzed. AgNPs colloid, as well as PVA-AgNPs composites, showed good toxic and antibiofilm activity, and pure PVA shows no toxic/antibiofilm activity.
机译:该工作的目的是制备由绿色合成银纳米颗粒(AgNP)掺杂的聚合物基质复合物(PMC)微纤维。将AgNP掺入聚合物基质可以向聚合物提供有毒性质。聚乙烯醇(PVA)用作基质。通过绿色方法合成AgNP,其中Rosmarinus Officinalis(R. Officinalis)的叶子提取物用作还原和封盖剂。 PVA-agnps复合材料以两种方式制备:以前的原位方法(加入平均直径为20nm的预制球酰基,在聚合物基质中加入)和原位方法(在聚合物复合制剂的过程中合成AgNP;原位合成的纳米颗粒是平均直径为〜100nm的不同形状的混合物。 FTIR(红外光谱与傅里叶变换),UV-VIS(紫外 - 可见光谱),TEM(透射电子显微镜),EDX(能量分散X射线光谱)和SEM(扫描电子显微镜)技术用于分析纳米粒子和制备的PMC。制备原位和前原位PMC的薄层和微纤维。两种PMC薄层中,AgNPS簇的存在明显。在静电纺丝之后,在纤维内观察纳米颗粒链。通过增加agnps体积分数(5体积%至20体积%)来提高纳米颗粒的分布。分析了针对单细胞生绿藻比例Kessleri(P.Kessleri)的AgNPS胶体,纯PVA和PVA-AGNPS复合材料的毒性和抗菌剂活性。 AgNPS胶体以及PVA-agnps复合材料表现出良好的毒性和抗生素活性,纯PVA没有显示有毒/抗抗菌活性。

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