PhagoScreener: A novel phagogram platform based on a capillary-wave microbioreactor

IF 4.9 2区 生物学 Q1 BIOCHEMICAL RESEARCH METHODS New biotechnology Pub Date : 2024-08-22 DOI:10.1016/j.nbt.2024.08.502
Kevin Viebrock , Jana Wilhelm , Bea Rölke , Leon Pastwa , Selina M. Schrader , Sven Meinen , Andreas Dietzel , Katrin Dohnt , Holger Ziehr , Imke H.E. Korf , Kathrin Bohle , Rainer Krull
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Abstract

Due to the overuse of antibiotics, the number of multidrug-resistant pathogen bacteria is rising in recent years posing a serious threat to human health. One promising alternative for treatment is the application of phage therapy using highly selective bacteriophages. Because of their selectivity, individual screens called phagograms for each patient are required to select phages from a phage library. Phagograms are mostly performed via bacterial cultivation on double layer agar plates and phage addition causing bacterial lysis. However, these assays are work-intensive and have a low ability for parallelization and automation. Hence, highly parallelizable and automatable microbioreactors in the lowest microliter scale could offer an economic solution increasing the throughput of phagograms. This paper demonstrates the applicability of a novel capillary-wave microbioreactor (cwMBR) to perform phagograms. Due to its small volume of only 7 µL and the open-droplet design, it can be easily automated and parallelized in future. Furthermore, the ability of online biomass measurement makes the cwMBR a perfect phagogram platform in the future. Herein, phagograms with E. coli and different concentrations of the phages MM02 and EASG3 were performed as proof of concept for phagograms in the cwMBR. Thereby, the cwMBR was able to measure differences in lysis kinetics of different phages. Furthermore, the phagograms were compared to those in conventional microtiter plate readers revealing the cwMBR as ideal alternative for phagograms as it combines favorable mixing conditions and a phage repellent hydrophilic glass surface with online biomass measurement in an open-droplet design for future parallelization and automation.

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PhagoScreener:基于毛细管波微型生物反应器的新型噬菌平台。
由于过度使用抗生素,近年来对多种药物产生抗药性的病原菌数量不断上升,对人类健康构成严重威胁。噬菌体疗法是一种很有前景的治疗方法,它使用高选择性的噬菌体。由于噬菌体具有选择性,因此需要对每位患者进行称为噬菌体图谱的单独筛选,以便从噬菌体库中选择噬菌体。噬菌体筛选大多是通过在双层琼脂平板上培养细菌并加入噬菌体导致细菌裂解来进行的。然而,这些检测方法工作量大,并行化和自动化能力低。因此,最低微升规模的高度可并行化和自动化微型生物反应器可以提供一种经济的解决方案,提高噬菌体分析的吞吐量。本文展示了一种新型毛细管微生物反应器(cwMBR)在进行相图分析方面的适用性。由于其体积小,仅为 7µL 且采用开放式液滴设计,因此未来可轻松实现自动化和并行化。此外,在线生物量测量的能力使 cwMBR 成为未来完美的相图平台。在此,我们用大肠杆菌和不同浓度的噬菌体 MM02 和 EASG3 进行了噬菌图分析,作为 cwMBR 噬菌图分析的概念验证。因此,cwMBR 能够测量不同噬菌体溶解动力学的差异。此外,噬菌体图与传统微孔板阅读器中的噬菌体图进行了比较,结果显示 cwMBR 是噬菌体图的理想替代品,因为它结合了有利的混合条件和噬菌体排斥亲水性玻璃表面,并采用开放式液滴设计进行在线生物量测量,未来可实现并行化和自动化。
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来源期刊
New biotechnology
New biotechnology 生物-生化研究方法
CiteScore
11.40
自引率
1.90%
发文量
77
审稿时长
1 months
期刊介绍: New Biotechnology is the official journal of the European Federation of Biotechnology (EFB) and is published bimonthly. It covers both the science of biotechnology and its surrounding political, business and financial milieu. The journal publishes peer-reviewed basic research papers, authoritative reviews, feature articles and opinions in all areas of biotechnology. It reflects the full diversity of current biotechnology science, particularly those advances in research and practice that open opportunities for exploitation of knowledge, commercially or otherwise, together with news, discussion and comment on broader issues of general interest and concern. The outlook is fully international. The scope of the journal includes the research, industrial and commercial aspects of biotechnology, in areas such as: Healthcare and Pharmaceuticals; Food and Agriculture; Biofuels; Genetic Engineering and Molecular Biology; Genomics and Synthetic Biology; Nanotechnology; Environment and Biodiversity; Biocatalysis; Bioremediation; Process engineering.
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