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Effect of bacterial nanocellulose binding on the bactericidal activity of bovine lactoferrin

机译:细菌纳米纤维素结合对牛乳铁蛋白杀菌活性的影响

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摘要

Bovine lactoferrin (bLF) has been extensively described as a wide spectrum antimicrobial protein. bLF bactericidal activity has been mainly attributed to two different mechanisms: environmental iron depletion and cell membrane destabilization. Due to its antimicrobial properties, bLF has been included in the formulation nutraceutical food products and edible active packages. This work comprises the experimental evidence of the requirement of bLF unrestricted mobility (“free bLF”) to effectively perform its bactericidal action. To assess the unrestricted and restricted bLF activity, a nontoxic matrix of bacterial nanocellulose (BNC) was used as carrier, and as an anchoring scaffold, respectively. Therefore, BNC was functionalized with bLF through two different methodologies: (i) bLF was embedded within the three-dimensional structure of BNC and; (ii) bLF was covalently bounded to the nanofibrils of BNC. bLF efficiency was tested against two bacteria isolated from clinical specimens, Escherichia coli and Staphylococcus aureus. bLF concentration after covalent binding to BNC was two-fold higher in comparison to the embedding method. Nevertheless, only the embedded bLF exhibited a significant bactericidal activity, due to bLF ability to permeate the BNC matrix and execute its bactericidal action.
机译:牛乳铁蛋白(BLF)已被广泛描述为宽的谱抗微生物蛋白。 BLF杀菌活性主要归因于两种不同的机制:环境铁耗竭和细胞膜不稳定。由于其抗微生物性质,BLF已包含在配方营养品食品和食用活性包装中。这项工作包括实施BLF不受限制的流动性(“免费BLF”)的实验证据,以有效地进行其杀菌作用。为了评估不受限制和限制的BLF活性,将细菌纳米纤维素(BNC)的无毒基质分别用作载体,并作为锚定支架。因此,通过两种不同的方法用BLF官能化BNC:(i)BLF嵌入BNC的三维结构内; (ii)BLF与BNC的纳米纤维共价束缚。针对从临床标本,大肠杆菌和金黄色葡萄球菌中分离的两种细菌测试了BLF效率。与包埋法相比,共价结合后的BLF浓度与BNC的结合后较高,比较高。然而,由于BLF渗透BNC基质的能力并执行其杀菌作用,只有嵌入的BLF表现出显着的杀菌活性。

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