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三种不同尺寸的银纳米粒子及其与新型水性聚氨酯纳米复合材料的抗菌性能。

Antibacterial properties of silver nanoparticles in three different sizes and their nanocomposites with a new waterborne polyurethane.

机构信息

Department of Chemical Engineering, National Chung Hsing University, Taichung, Taiwan, Republic of China.

出版信息

Int J Nanomedicine. 2010 Nov 19;5:1017-28. doi: 10.2147/IJN.S14572.

Abstract

Silver nanoparticles (AgNPs) are strong bactericidal agents but they are also cytotoxic. Embedding them in a polymer matrix may reduce their cytotoxic effect. In the present study, AgNPs in three average sizes were tested for their antibacterial activities and cytotoxicity. Nanocomposites from a new waterborne polyetherurethane (PEU) ionomer and AgNPs were prepared without the use of any crosslinker. It was observed that the antibacterial activity of AgNPs against Escherichia coli started at the effective concentration of 0.1-1 ppm, while that against Staphylococcus aureus started at higher concentrations of 1-10 ppm. Cytotoxicity of AgNPs was observed at the concentration of 10 ppm. AgNPs with smaller average size showed greater antibacterial activity as well as cytotoxicity. The PEU synthesized in this study showed high tensile strength, and the addition of AgNPs at all sizes further increased its thermal stability. The delicate surface features of nanophases, however, were only observed in nanocomposites with either small-or medium-sized AgNPs. PEU-Ag nanocomposites had a strong bacteriostatic effect on the growth of E. coli and S. aureus. The proliferation of endothelial cells on PEU-Ag nanocomposites was enhanced, whereas the platelet adhesion was reduced. The expression of endothelial nitric oxide synthase gene was upregulated on PEU-Ag containing small-sized AgNPs (30 ppm) or medium-sized AgNPs (60 ppm). This effect was not as remarkable in nanocomposites from large-sized AgNPs. Overall, nanocomposites from the PEU and 60 ppm of the medium-sized (5 nm) AgNPs showed the best biocompatibility and antibacterial activity. Addition of smaller or larger AgNPs did not produce as substantial an effect in PEU, especially for the larger AgNPs.

摘要

银纳米粒子(AgNPs)是很强的杀菌剂,但它们也具有细胞毒性。将它们嵌入聚合物基质中可能会降低其细胞毒性。在本研究中,测试了三种平均粒径的 AgNPs 的抗菌活性和细胞毒性。新型水性聚醚聚氨酯(PEU)离聚物与 AgNPs 的纳米复合材料是在不使用任何交联剂的情况下制备的。结果表明,AgNPs 对大肠杆菌的抗菌活性从有效浓度 0.1-1ppm 开始,而对金黄色葡萄球菌的抗菌活性则从更高浓度 1-10ppm 开始。AgNPs 的细胞毒性在浓度为 10ppm 时观察到。平均粒径较小的 AgNPs 表现出更强的抗菌活性和细胞毒性。本研究中合成的 PEU 具有较高的拉伸强度,所有粒径的 AgNPs 的加入都进一步提高了其热稳定性。然而,纳米相的精细表面特征仅在含有小尺寸或中等尺寸 AgNPs 的纳米复合材料中观察到。PEU-Ag 纳米复合材料对大肠杆菌和金黄色葡萄球菌的生长具有很强的抑菌作用。内皮细胞在 PEU-Ag 纳米复合材料上的增殖增强,而血小板黏附减少。内皮型一氧化氮合酶基因的表达在上皮细胞中上调在含有小尺寸(30ppm)或中等尺寸(5nm)AgNPs 的 PEU-Ag 中。在含有大尺寸 AgNPs 的纳米复合材料中,这种效果并不显著。总的来说,PEU 与 60ppm 中尺寸(5nm)AgNPs 的纳米复合材料表现出最好的生物相容性和抗菌活性。添加更小或更大的 AgNPs 对 PEU 没有产生同样显著的效果,尤其是对较大的 AgNPs 而言。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6c77/3010153/9c4d0dfc7629/ijn-5-1017f1.jpg

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