毛细管波微生物反应器平台自动化提高噬菌体灵敏度筛选效率

IF 3.9 4区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY
Kevin Viebrock, Ilka Knoke, Leon Huß, Detlev Rasch, Sven Meinen, Andreas Dietzel, Rainer Krull
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引用次数: 0

摘要

为了提高产量,减少实验室工作和提高可重复性,生物过程的自动化现在变得越来越重要。这尤其适用于微生物反应器(mbr),它可以很容易地集成在高度并行化和自动化的平台中,因此,可用于筛选、基于细胞的测定和生物工艺开发。mbr的一个有前景的制药应用是在噬菌体治疗中进行噬菌体敏感性测试,称为噬菌体图。然而,到目前为止,还没有自动化和并行化的平台可以满足吞噬图的要求。因此,一种新型的高度并行的毛细管波微生物反应器(cwMBR),体积为7 μ L,已经成功应用于吞噬图,通过内部构建的平台进行扩展,可以在个位数纳升范围内自动添加流体。cwMBR具有抗噬菌体的亲水玻璃表面。此外,开发了一种定制的高度并行化的低微升尺度生物质测量装置,并在cwMBR中进行了验证。为了证明该平台对生成噬菌体的适用性,使用大肠杆菌和自动噬菌体添加进行了噬菌体生成。结果表明噬菌体对细菌有明显的裂解作用,从而证实了在高度并行化的cwMBR平台上进行自动吞噬图的适用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Automation of a Capillary-Wave Microbioreactor Platform to Enhance Phage Sensitivity Screen Efficiency

Automation of a Capillary-Wave Microbioreactor Platform to Enhance Phage Sensitivity Screen Efficiency

To increase their throughput, reduce laboratory work and improve reproducibility, automation of bioprocesses is gaining in importance nowadays. This applies in particular to microbioreactors (MBRs), which can be easily integrated in highly parallelized and automated platforms and, therefore, be applied for screenings, cell-based assays, and bioprocess development. One promising pharmaceutical application for MBRs is the performance of phage sensitivity tests called phagograms in phage therapy. However, there is no automated and parallelized platform available so far that fulfills the requirements of phagograms. Therefore, a novel highly parallelizable capillary-wave microbioreactor (cwMBR) with a volume of 7 µL, which has already been successfully applied for phagograms, was extended by an in-house built platform for automated fluid addition in the single-digit nanoliter range. The cwMBR has a phage-repellent hydrophilic glass surface. Furthermore, a custom-made highly parallelizable device for biomass measurement in the lower microliter scale was developed and validated in the cwMBR. To prove the applicability of the platform for the generation of phagograms, a phagogram using Escherichia coli and automated phage addition was performed. The results indicate a clear lysis of the bacteria by the phages and thus confirm the applicability of performing automated phagograms in the highly parallelizable cwMBR platform.

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来源期刊
Engineering in Life Sciences
Engineering in Life Sciences 工程技术-生物工程与应用微生物
CiteScore
6.40
自引率
3.70%
发文量
81
审稿时长
3 months
期刊介绍: Engineering in Life Sciences (ELS) focuses on engineering principles and innovations in life sciences and biotechnology. Life sciences and biotechnology covered in ELS encompass the use of biomolecules (e.g. proteins/enzymes), cells (microbial, plant and mammalian origins) and biomaterials for biosynthesis, biotransformation, cell-based treatment and bio-based solutions in industrial and pharmaceutical biotechnologies as well as in biomedicine. ELS especially aims to promote interdisciplinary collaborations among biologists, biotechnologists and engineers for quantitative understanding and holistic engineering (design-built-test) of biological parts and processes in the different application areas.
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