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具有抗菌性能的功能复合 Cu(II)-多金属氧酸盐/PLA 的开发。

Development of Functional Composite Cu(II)-Polyoxometalate/PLA with Antimicrobial Properties.

机构信息

Department of Chemistry and Biotechnology, Tallinn University of Technology (TalTech), 12618 Tallinn, Estonia.

Research Laboratory "Chemistry of Polyoxometalates and Complex Oxide Systems", Vasyl' Stus Donetsk National University, 21027 Vinnytsia, Ukraine.

出版信息

Molecules. 2022 Apr 13;27(8):2510. doi: 10.3390/molecules27082510.

Abstract

Novel composite self-disinfecting films of polylactic acid (PLA) filled with nanosized particles of double sodium-copper(II) paratungstate B NaCu(CuOH)[WO(OH)]·32HO (POM) were developed. The solvent casting (POM/PLA film) and solvent-free melt extrusion methods (Extr. POM/PLA film) were applied for film preparation. The copper (II) ion release to water from both types of the films after 10 days at different temperatures demonstrated that the PLA matrix acts as a diffusion barrier, and the resulting concentration of released copper in water at room temperature remained low, at 0.79% for POM/PLA film and 0.51% for Extr. POM/PLA film. The POM-containing films reveals a significant inhibitory effect against ATCC 25922 in the agar diffusion test. The numbers of CFUs in washes of the films after incubation for 24 h were found to be 3.6 CFU mL (POM/PLA film) and 4.1 CFU mL (Extr. POM/PLA film). The films combine the antibacterial properties of POM and a bio-based polymer matrix, which makes them a prospective coating material for applications in hospital indoor environments. Excellent thermal stability of POM gives a technological advantage for industrial manufacturing to allow the processing of novel composite material in the solvent free (molten) state.

摘要

新型聚乳酸(PLA)复合自消毒薄膜中填充了双钠-铜(II)偏钨酸钠 B NaCu(CuOH)[WO(OH)]·32HO(POM)纳米颗粒。采用溶剂浇铸(POM/PLA 薄膜)和无溶剂熔融挤出方法(挤出。POM/PLA 薄膜)用于薄膜制备。两种类型的薄膜在不同温度下放置 10 天后,铜(II)离子向水中释放的情况表明,PLA 基质充当扩散屏障,在室温下释放到水中的铜浓度仍然较低,POM/PLA 薄膜为 0.79%,挤出。POM/PLA 薄膜为 0.51%。含 POM 的薄膜在琼脂扩散试验中对 ATCC 25922 表现出显著的抑制作用。孵育 24 h 后,薄膜冲洗液中的 CFU 数分别为 3.6 CFU mL(POM/PLA 薄膜)和 4.1 CFU mL(挤出。POM/PLA 薄膜)。这些薄膜结合了 POM 的抗菌性能和生物基聚合物基质,使其成为医院室内环境应用的有前景的涂层材料。POM 具有出色的热稳定性,为工业制造带来了技术优势,允许在无溶剂(熔融)状态下加工新型复合材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c853/9025916/21682a7c4964/molecules-27-02510-g001.jpg

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