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Surface-Engineered Starch Magnetic Microparticles for Highly Effective Separation of a Broad Range of Bacteria

机译:表面设计的淀粉磁性微粒,用于高效分离广泛的细菌

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摘要

Polymeric magnetic particles (PMPs) have become a powerful tool for the separation and concentration of microorganisms from a heterogeneous liquid matrix. The functionalization of PMPs with polycationic polymers, such as chitosan, provides an effective means of capturing a broad spectrum of pathogenic bacteria through the intrinsic nature of chitosan interacting with the surface components of bacteria. Here, we report a fairly simple approach for the preparation of starch magnetic microparticles (SMMPs) through molecular rearrangement of short-chain glucans (SCGs) produced by enzymatic debranching of waxy maize starch. The surfaces of SMMPs were readily functionalized with chitosan through electrostatic interaction and hydrogen bonding. The chitosan-functionalized SMMPs (CS@SMMPs) showed high capture efficiency (90%) for both Gram-positive and Gram-negative bacteria. To further investigate the mechanisms of chitosan bacteria interaction, we employed model bacteria with different surface compositions. The outer-core lipopolysaccharides as well as the surface charge of bacteria were found to be important for the specific interactions of chitosan to bacteria. The biocompatible paramagnetic materials developed in this study would be promising in removing or separating bacteria from contaminated water for hygienic purposes or subsequent biochemical analysis of certain pathogenic bacteria present in the sample.
机译:聚合物磁性颗粒(PMP)已成为来自非均相液体基质的微生物分离和浓缩的强大工具。 PMP具有诸如壳聚糖,例如壳聚糖的PMP的官能化提供了通过与细菌的表面成分相互作用的壳聚糖的内在性质,提供了捕获广谱的致病细菌的有效方法。在这里,我们通过蜡质玉米淀粉酶脱溴脱落制备的短链葡聚糖(SCG)来报告一种相当简单的方法来制备淀粉磁性微粒(SMMP)。通过静电相互作用和氢键粘合,用壳聚糖容易地官能化SMMPS的表面。壳聚糖官能化的SMMPS(CS @ SMMPS)显示革兰氏阳性和革兰氏阴性细菌的高捕获效率(& 90%)。为了进一步研究壳聚糖细菌相互作用的机制,我们使用具有不同表面组合物的​​模型细菌。发现外核脂多糖以及细菌的表面电荷对壳聚糖对细菌的特异性相互作用是重要的。本研究中开发的生物相容性顺磁性材料将承诺从污染的水中去除或分离出卫生用水以卫生目的或随后存在于样品中存在的某些致病细菌的生化分析。

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