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Antibacterial mechanism of chitosan microspheres in a solid dispersing system against E-coli

机译:壳聚糖微球在固体分散体系中对大肠杆菌的抗菌机理

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摘要

In this study, we investigated the antibacterial mechanism through the interfacial contacting inhibition behaviors of chitosan antimicrobials against Escherichia coli in solid dispersing state. Chitosan microspheres (CMs) were prepared by emulsification cross-linking reaction, and oleoyl-CMs (OCMs) were obtained by introduction of oleoyl groups to the chitosan. The CMs were with smooth surface and spherical shape of diameter of about 124 mu m. The antibacterial activity was directly proportional to the concentration and the hydrophobic property of CMs. The fluorescence experiments indicated CMs had influenced the structure of membrane, especially the OCMs were speculated to interact with proteins on the cell membrane. SEM photographs showed E. coli adhered to the surface of the CMs and provided evidences for the disruption of the cells, while the bacterium conglomerated on the surface of the OCMs. The CMs changed the permeability of membrane and caused cellular leakage that correlated with the hydrophobic interaction between CMs and cytoplasmic membrane phospholipids of Gram-negative bacteria. Solid dispersing system makes the antibacterial activities of CMs counted as a sequent event-driven to study the antibacterial mechanism of chitosan originally. (C) 2008 Elsevier B.V. All rights reserved.
机译:在这项研究中,我们通过壳聚糖抗菌剂对固态分散状态的大肠杆菌的界面接触抑制行为研究了抗菌机制。通过乳化交联反应制备壳聚糖微球(CMs),并通过向壳聚糖中引入油酰基获得油酰-CMs(OCMs)。 CM具有光滑的表面和直径约为124μm的球形。抗菌活性与CM的浓度和疏水性成正比。荧光实验表明CMs影响了膜的结构,特别是OCMs被认为与细胞膜上的蛋白质相互作用。 SEM照片显示,大肠杆菌粘附在CM的表面,并提供了破坏细胞的证据,而细菌聚集在OCM的表面。 CMs改变了膜的渗透性并引起细胞渗漏,这与CMs和革兰氏阴性细菌的细胞质膜磷脂之间的疏水相互作用有关。固体分散系统使CMs的抗菌活性被认为是继发事件驱动的,因此最初研究了壳聚糖的抗菌机理。 (C)2008 Elsevier B.V.保留所有权利。

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