Kudzin Marcin H, Giełdowska Małgorzata, Mrozińska Zdzisława, Boguń Maciej
Lukasiewicz Research Network-Textile Research Institute, Brzezinska 5/15, 92-103 Lodz, Poland.
Antibiotics (Basel). 2021 Oct 30;10(11):1327. doi: 10.3390/antibiotics10111327.
The aim of this study was to investigate an antimicrobial and degradable composite material consisting of melt-blown poly(lactic acid) nonwoven fabrics, alginate, and zinc. This paper describes the method of preparation and the characterization of the physicochemical and antimicrobial properties of the new fibrous composite material. The procedure consists of fabrication of nonwoven fabric and two steps of dip-coating modification: (1) impregnation of nonwoven samples in the solution of alginic sodium salt and (2) immersion in a solution of zinc (II) chloride. The characterization and analysis of new material included scanning electron microscopy (SEM), specific surface area (SSA), and total/average pore volume (BET). The polylactide/alginate/Zn fibrous composite were subjected to microbial activity tests against colonies of Gram-positive (), Gram-negative () bacterial strains, and the following fungal strains: van Tieghem and . These results lay a technical foundation for the development and potential application of new composite as an antibacterial/antifungal material in biomedical areas.
本研究的目的是研究一种由熔喷聚乳酸无纺布、海藻酸盐和锌组成的抗菌可降解复合材料。本文描述了这种新型纤维复合材料的制备方法及其物理化学和抗菌性能的表征。该过程包括无纺布的制造和两步浸涂改性:(1)将无纺布样品浸渍在海藻酸钠溶液中,(2)浸入氯化锌(II)溶液中。新材料的表征和分析包括扫描电子显微镜(SEM)、比表面积(SSA)和总/平均孔体积(BET)。聚丙交酯/海藻酸盐/锌纤维复合材料针对革兰氏阳性()、革兰氏阴性()细菌菌株以及以下真菌菌株:范·蒂格姆菌和 进行了微生物活性测试。这些结果为新型复合材料作为生物医学领域抗菌/抗真菌材料的开发和潜在应用奠定了技术基础。