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基于蜂蜜的陷阱:可持续的水消毒原型。

Honey-based trap for Pseudomonas: a sustainable prototype for water disinfection.

机构信息

Amity Institute of Biotechnology, Amity University Rajasthan, Jaipur, 303007, India.

Amity Institute of Biotechnology, Amity University, Sec 125, Noida, 201311, India.

出版信息

Arch Microbiol. 2021 Dec;203(10):6061-6069. doi: 10.1007/s00203-021-02568-0. Epub 2021 Sep 21.

Abstract

This paper introduces a novel prototype for the removal of Pseudomonas from water samples. Bacterial cells have the tendency to get attracted towards specific chemicals (chemotaxis); a 'honey-based trap' (henceforth, addressed as 'honey-trap') strip was conceptualized by integrating a combination of serine, pseudomonas-specific chemoattractant and honey to attract and inhibit the bacteria in situ. Honey, a natural antimicrobial agent, has garnered the attention as an effective inhibitor for Pseudomonal biofilms and wound infections. Dipping serine side of the strip attracted bacteria towards honey-trap, whereby the porous nature of the strip facilitated the 'trapping' and subsequent diffusion of the bacterial cells towards honey-adsorbed end of the strip. This 'honey-trap' reportedly leads to the targeted elimination of Pseudomonas, hence facilitating its removal. The percentage efficacy of this 'honey-trap' device is 96% with a log reduction equivalent to 1.6 within a time frame of 2 h. Pseudomonas aeruginosa, although, not a natural contaminant of potable water, enters circulation due to improperly maintained plumbing fixtures and storage facilities. Honey-trap strip is an easy to use, biodegradable and cost-effective sustainable solution, and thus a scaled-up version of this device may enable substantial improvement in quality of potable water. Schematics showing the preparation and working of the Pseudomonas Honey-trap. Serine as an attractant and honey as an inhibitor was absorbed on filter strips (HT) for use. The strip was dipped in culture from serine end. After different time period of incubation, difference in bacterial load was confirmed by measuring the electrical conductivity and OD600nm of the culture. Additionally, inhibitory effect of HS was confirmed by placing the strip incubated with culture on agar plates and differences in bacterial lawn were monitored. Removal of bacterial cells from the suspension was also confirmed using absorption spectroscopy.

摘要

本文介绍了一种从水样中去除假单胞菌的新型原型。细菌细胞有趋向于特定化学物质的趋势(趋化性);通过整合丝氨酸、假单胞菌特异性趋化剂和蜂蜜的组合,设计了一种“蜂蜜陷阱”(以下简称“蜂蜜陷阱”)条带,以原位吸引和抑制细菌。蜂蜜作为一种天然抗菌剂,已成为抑制假单胞菌生物膜和伤口感染的有效抑制剂。该条带的丝氨酸侧吸引细菌向蜂蜜陷阱移动,条带的多孔性质便于“捕获”和随后扩散细菌细胞朝向蜂蜜吸附端。据称,这种“蜂蜜陷阱”可导致假单胞菌的靶向消除,从而促进其去除。该“蜂蜜陷阱”装置的有效率为 96%,对数减少相当于在 2 小时内减少 1.6。铜绿假单胞菌虽然不是饮用水的天然污染物,但由于管道设备和储存设施维护不当,会进入循环。蜂蜜陷阱条带易于使用、可生物降解且具有成本效益,是一种可持续的解决方案,因此该装置的放大版本可能会显著提高饮用水的质量。原理图显示了制备和使用假单胞菌蜂蜜陷阱的过程。将丝氨酸作为诱饵和蜂蜜作为抑制剂吸收在滤纸条(HT)上以供使用。将条带从丝氨酸端浸入培养物中。孵育不同时间后,通过测量培养物的电导率和 OD600nm 来确认细菌负荷的差异。此外,通过将孵育有培养物的条带放置在琼脂平板上并监测细菌菌斑的差异来确认 HS 的抑制作用。还使用吸收光谱法确认了从悬浮液中去除细菌细胞。

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