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首页> 外文期刊>Scientific reports. >“Nanofiltration” Enabled by Super-Absorbent Polymer Beads for Concentrating Microorganisms in Water Samples
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“Nanofiltration” Enabled by Super-Absorbent Polymer Beads for Concentrating Microorganisms in Water Samples

机译:通过超吸收性聚合物珠子使“纳滤”能够浓缩水样中的微生物

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Detection and quantification of pathogens in water is critical for the protection of human health and for drinking water safety and security. When the pathogen concentrations are low, large sample volumes (several liters) are needed to achieve reliable quantitative results. However, most microbial identification methods utilize relatively small sample volumes. As a consequence, a concentration step is often required to detect pathogens in natural waters. Herein, we introduce a novel water sample concentration method based on superabsorbent polymer (SAP) beads. When SAP beads swell with water, small molecules can be sorbed within the beads, but larger particles are excluded and, thus, concentrated in the residual non-sorbed water. To illustrate this approach, millimeter-sized poly(acrylamide-co-itaconic acid) (P(AM-co-IA)) beads are synthesized and successfully applied to concentrate water samples containing two model microorganisms: Escherichia coli and bacteriophage MS2. Experimental results indicate that the size of the water channel within water swollen P(AM-co-IA) hydrogel beads is on the order of several nanometers. The millimeter size coupled with a negative surface charge of the beads are shown to be critical in order to achieve high levels of concentration. This new concentration procedure is very fast, effective, scalable, and low-cost with no need for complex instrumentation.
机译:水病病原体的检测和定量对于保护人体健康以及饮用水安全和安全性至关重要。当病原体浓度低时,需要大的样品体积(几升)来实现可靠的定量结果。然而,大多数微生物识别方法利用相对较小的样品体积。结果,通常需要浓缩步骤来检测天然水域的病原体。在此,我们介绍一种基于超吸收性聚合物(SAP)珠的新型水样浓度法。当SAP珠子用水膨胀时,可以在珠粒内吸附小分子,但是较大的颗粒被排除在残留的非吸附水中浓缩。为了说明这种方法,合成毫米大小的聚(丙烯酰胺 - 共衣康酸)(P(AM-Co-Ia))珠粒并成功地应用于浓缩含有两种模型微生物的水样:大肠杆菌和噬菌体MS2。实验结果表明,水溶胀P(AM-Co-Ia)水凝胶珠的水通道的尺寸约为几纳米的顺序。毫米尺寸与珠子的负面电荷耦合,被证明是至关重要的,以实现高水平的浓度。这种新的浓度手术非常快,有效,可扩展,低成本,无需复杂的仪器。

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