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聚羟基丁酸酯和酚类化合物微藻电纺纳米纤维:一种具有抗菌活性的新型纳米材料。

Polyhydroxybutyrate and phenolic compounds microalgae electrospun nanofibers: A novel nanomaterial with antibacterial activity.

机构信息

Laboratory of Microbiology and Biochemistry, College of Chemistry and Food Engineering, Federal University of Rio Grande (FURG), P.O. Box 474, 96203-900 Rio Grande, RS, Brazil.

Laboratory of Biochemical Engineering, College of Chemistry and Food Engineering, Federal University of Rio Grande (FURG), P.O. Box 474, 96203-900 Rio Grande, RS, Brazil.

出版信息

Int J Biol Macromol. 2018 Jul 1;113:1008-1014. doi: 10.1016/j.ijbiomac.2018.03.002. Epub 2018 Mar 2.

Abstract

Polymer nanofibers produced by electrospinning are promising for use in food packaging because of their nanometric diameter, which provides a barrier to external conditions above the possible incorporation of the active compounds. The microalga Spirulina sp. LEB 18 synthesizes bioproducts, such as polyhydroxybutyrate (PHB), which is biodegradable and has similar mechanical and thermal properties to polymers of petrochemical origin. Moreover, phenolic compounds of microalgae have antibacterial, antifungal, and antioxidant activities, which is a differential for the development of packaging. The objective of the study was to develop a nanomaterial with antibacterial action from bioproducts of microalgal origin. PHB nanofibers containing phenolic compounds presented average diameter of 810±85nm exhibited hydrophobicity, which gave protection to the food relative to the moisture outside the package. These nanofibers showed inhibition of the growth of Staphylococcus aureus ATCC 25923 with a zone of 7.5±0.4mm. Thermal and mechanical properties have confirmed the potential applicability of this material as food packaging. This new nanomaterial combines a packaging function to protect products and to be biodegradable with the antibacterial activity that prevents the proliferation of microorganisms and ensures the quality and preservation of food.

摘要

静电纺丝制备的聚合物纳米纤维有望用于食品包装,因为其纳米级直径为外部条件提供了屏障,并且可能包含活性化合物。微藻螺旋藻 LEB 18 合成生物产物,如聚羟基丁酸酯 (PHB),它是可生物降解的,具有与石油化工来源的聚合物相似的机械和热性能。此外,微藻的酚类化合物具有抗菌、抗真菌和抗氧化活性,这是开发包装的一个差异。本研究的目的是开发一种具有抗菌作用的纳米材料,该材料来源于微藻的生物产物。含有酚类化合物的 PHB 纳米纤维的平均直径为 810±85nm,表现出疏水性,相对于包装外的水分,为食品提供了保护。这些纳米纤维对金黄色葡萄球菌 ATCC 25923 的生长表现出抑制作用,抑菌圈为 7.5±0.4mm。热和机械性能证实了这种材料作为食品包装的潜在适用性。这种新型纳米材料将保护产品的包装功能与可生物降解性以及抗菌活性相结合,可防止微生物的增殖,确保食品的质量和保存。

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