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首页> 外文期刊>Food Hydrocolloids >From beta-cyclodextrin polyelectrolyte to layer-by-layer self-assembly microcapsules: From inhibition of bacterial growth to bactericidal effect
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From beta-cyclodextrin polyelectrolyte to layer-by-layer self-assembly microcapsules: From inhibition of bacterial growth to bactericidal effect

机译:从β-环糊精聚电解质到层逐层自组装微胶囊:从抑制细菌生长到杀菌作用

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Pathogenic bacteria resistance to antimicrobial agents has emerged as a major health issue. Developing new systems enabling inhibitory and bactericidal effects is crucial. Herein, layer-by-layer technique (LbL) was used to fabricate microcapsules composed of biopolymers, cationic polycyclodextrin (P(CD+)) and anionic alginate (alg(-)). This was achieved through successive adsorption of these polyelectrolytes onto calcium carbonate microparticles (CaCO3) used as template. Then, a chelating agent was added for removing the CaCO3 core, leading to microcapsules. Quartz crystal microbalance and zeta potential measurements evidenced the successful alternate adsorption of polyelectrolytes and related charge reversal, respectively, upon the LbL deposition. The shape of the capsules was characterized by Scanning Electron Microscopy (SEM) and fluorescence microscopy. The antibacterial activity of P(CD+) was first evidenced on two well-known bacteria: Staphylococcus aureus (Gram-positive) and Escherichia coli (Gram-negative) using well diffusion method on Plate Count Agar (PCA) medium. Then, an inhibitory effect on the bacteria growth has been observed for the P(CD+)-based microcapsules during bacterial culture in Luria-Bertani (LB) broth medium. Our results pointed out towards a strong dependence of the extent of inhibition on the number of self-assembled polyelectrolytes' layers and capsules' concentration. The effect increased with both concentration and number of layers. Acridine orange staining evidenced the bactericidal effect of P(CD+)-based microcapsules. This contribution demonstrates unambiguously that: i) aqueous solutions of P(CD+) exhibit antibacterial activity at physiological pH suggesting that P(CD+) can act as a versatile alternative to the widely studied chitosan whose antimicrobial activity is limited to acidic pH and ii) (P(CD+)/alg-) n hollow capsules can be exploited as an antibacterial agents with additional host properties.
机译:致病性细菌对抗微生物剂的抗性已成为主要的健康问题。开发能够抑制性和杀菌效果的新系统至关重要。在此,使用层 - 逐层技术(LBL)来制造由生物聚合物组成的微胶囊,阳离子多环司(P(CD +))和阴离子藻酸盐(ALG( - ))。这是通过将这些聚电解质的连续吸附到用作模板的碳酸钙微粒(CaCO 3)上来实现的。然后,加入螯合剂以除去用于除去微胶囊的CaCO 3核心。石英晶体微稳定和Zeta电位测量证明了在LBL沉积时分别成功地交替吸附聚电解质和相关电荷反转。通过扫描电子显微镜(SEM)和荧光显微镜,表征胶囊的形状。 P(CD +)的抗菌活性首先在两个公知的细菌上证明了在板数琼脂(PCA)培养基上的孔扩散法(PCA)培养基上的葡萄球菌(革兰氏阴性)和大肠杆菌(革兰氏阴性)。然后,在Luria-Bertani(LB)肉汤介质中的细菌培养过程中,已经观察到对基于P(CD +)的微胶囊的抑制作用。我们的结果指出了对自组装聚电解质层和胶囊浓度的抑制程度的强烈依赖。效果随着层的浓度和数量而增加。吖啶橙色染色证明了基于P(CD +)的微胶囊的杀菌作用。该贡献明确地证明:i)P(CD +)的水溶液在生理pH下表现出抗菌活性,表明P(CD +)可以作为广泛研究的壳聚糖的通用替代,其抗微生物活性限于酸性pH和II)( P(CD +)/ ALG-)N中空胶囊可以被利用为具有额外宿主性质的抗菌剂。

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