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异丙醇对大肠杆菌全细胞介电常数影响的电泳分析。

Dielectrophoretic analysis of the impact of isopropyl alcohol on the electric polarisability of Escherichia coli whole-cells.

机构信息

Experimental Biophysics and Applied Nanosciences, Department of Physics, Bielefeld University, 33615, Bielefeld, Germany.

Industrial Organic Chemistry and Biotechnology, Department of Chemistry, Bielefeld University, 33615, Bielefeld, Germany.

出版信息

Anal Bioanal Chem. 2020 Jun;412(16):3925-3933. doi: 10.1007/s00216-020-02451-9. Epub 2020 Mar 11.

Abstract

Whole-cell biocatalysts are versatile tools in (industrial) production processes; though, the effects that impact the efficiency are not fully understood yet. One main factor that affects whole-cell biocatalysts is the surrounding medium, which often consists of organic solvents due to low solubility of substrates in aqueous solutions. It is expected that organic solvents change the biophysical and biochemical properties of the whole-cell biocatalysts, e.g. by permeabilising the cell membrane, and thus analysis of these effects is of high importance. In this work, we present an analysis method to study the impact of organic solvents on whole-cell biocatalysts by means of dielectrophoresis. For instance, we evaluate the changes of the characteristic dielectrophoretic trapping ratio induced by incubation of Escherichia coli, serving as a model system, in an aqueous medium containing isopropyl alcohol. Therefore, we could evaluate the impact on the electric polarisability of the cells. For this purpose, a special microchannel device was designed and Escherichia coli cells were genetically modified to reliably synthesise a green fluorescent protein. We could demonstrate that our method was capable of revealing different responses to small changes in isopropyl alcohol concentration and incubation duration. Complementary spectrophotometric UV-Vis (ultraviolet-visible light) absorbance analysis of released NAD(P)/NAD(P)H cofactor and proteins confirmed our results. Based on our results, we discuss the biophysical effects taking place during incubation. Graphical abstract.

摘要

全细胞生物催化剂是(工业)生产过程中的多功能工具;尽管,影响效率的因素尚未完全了解。影响全细胞生物催化剂的一个主要因素是周围介质,由于底物在水溶液中的溶解度低,周围介质通常由有机溶剂组成。预计有机溶剂会改变全细胞生物催化剂的生物物理和生化特性,例如通过渗透细胞膜,因此分析这些影响非常重要。在这项工作中,我们提出了一种通过介电泳研究有机溶剂对全细胞生物催化剂影响的分析方法。例如,我们评估了在含有异丙醇的水溶液中孵育大肠杆菌作为模型系统时,特征介电泳捕获比的变化。因此,我们可以评估对细胞的电极化率的影响。为此,设计了一种特殊的微通道装置,并对大肠杆菌细胞进行了遗传修饰,以可靠地合成绿色荧光蛋白。我们能够证明我们的方法能够揭示出对异丙醇浓度和孵育时间的微小变化的不同反应。释放的 NAD(P)/NAD(P)H 辅因子和蛋白质的补充分光光度法 UV-Vis(紫外线-可见光)吸收分析证实了我们的结果。基于我们的结果,我们讨论了孵育过程中发生的生物物理效应。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/290b/7235074/cc7c5a600df1/216_2020_2451_Figa_HTML.jpg

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