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利用等离子体处理和银纳米颗粒由淀粉-聚乙烯吡咯烷酮复合材料制备抗菌功能薄膜

Fabrication of Antibacterial and Functional Films from Starch-Polyvinylpyrrolidone Composite Using Plasma Treatment and Silver Nanoparticles.

作者信息

Islam Muhammad Nazrul, Modupalli Nikitha, Rahman Md Mahfuzur

机构信息

Department of Food Science, University of Arkansas, Fayetteville, Arkansas 72704, United States.

出版信息

ACS Omega. 2025 Aug 13;10(33):37419-37431. doi: 10.1021/acsomega.5c03293. eCollection 2025 Aug 26.

Abstract

Biopolymers and water-soluble nontoxic synthetic polymer composites using silver nanoparticles are astute approaches for antibacterial film fabrication. Moreover, surface treatment of the biopolymeric composite film by cold plasma can enhance the biocidal activity. Silver nanoparticles were synthesized by using the reduction method. Films were fabricated with different ratios of rice starch and polyvinylpyrrolidones (PVP) (1:0, 1:1, and 3:1), with and without silver (Ag) nanoparticles. A plasma jet was used to treat the film's surfaces by placing the Film 0.5 cm below the plasma discharge. Surface morphology was monitored by scanning electron microscopy (SEM), and the existence of Ag nanoparticles in the film was confirmed by X-ray diffraction (XRD). The UV-vis spectrum at 420 nm confirms Ag nanoparticles, which have an average hydrodynamic radius of 207.3 ± 21 nm, measured by a Zetasizer, and an average particle size of 69.85 ± 2.13 nm, analyzed by transmission electron microscopy (TEM). Moisture content, water absorption, swelling properties, tensile strength, contact angle, and DSC and TGA of all films were studied. It was observed that the moisture content, moisture absorption, and tensile strength increased after the addition of PVP, with few exceptions. All these properties were improved in plasma-treated films. Crystallinity, thermal stability, and glass transition temperature ( ) were also enhanced when the surface of the films was treated with cold plasma. The antibacterial activity of these films was evaluated by using the agar diffusion method, and silver nanoparticle-containing films showed good antibacterial properties, which increased significantly after plasma jet treatment of the films. The findings indicated that the plasma surface-treated silver nanoparticle-incorporated rice starch-PVP composite film has the potential to be used as an antibacterial film. These films can be used as bandages for wound healing and antibacterial packaging.

摘要

使用银纳米颗粒的生物聚合物和水溶性无毒合成聚合物复合材料是制备抗菌薄膜的明智方法。此外,通过冷等离子体对生物聚合物复合薄膜进行表面处理可以增强其杀菌活性。采用还原法合成了银纳米颗粒。制备了不同比例的大米淀粉和聚乙烯吡咯烷酮(PVP)(1:0、1:1和3:1)的薄膜,有银(Ag)纳米颗粒和无银纳米颗粒。通过将薄膜放置在等离子体放电下方0.5厘米处,使用等离子体射流对薄膜表面进行处理。通过扫描电子显微镜(SEM)监测表面形态,并通过X射线衍射(XRD)确认薄膜中银纳米颗粒的存在。在420nm处的紫外可见光谱证实了银纳米颗粒的存在,通过Zetasizer测量其平均流体动力学半径为207.3±21nm,通过透射电子显微镜(TEM)分析其平均粒径为69.85±2.13nm。研究了所有薄膜的水分含量、吸水率、溶胀性能、拉伸强度、接触角以及DSC和TGA。观察到添加PVP后,除少数情况外,水分含量、吸湿率和拉伸强度增加。等离子体处理后的薄膜所有这些性能都得到了改善。当薄膜表面用冷等离子体处理时,结晶度、热稳定性和玻璃化转变温度( )也得到了提高。通过琼脂扩散法评估了这些薄膜的抗菌活性,含银纳米颗粒的薄膜表现出良好的抗菌性能,薄膜经等离子体射流处理后抗菌性能显著提高。研究结果表明,等离子体表面处理的含银纳米颗粒的大米淀粉-PVP复合薄膜有潜力用作抗菌薄膜。这些薄膜可用于伤口愈合的绷带和抗菌包装。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db42/12391959/ef99d7fcf8f2/ao5c03293_0001.jpg

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