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Viability of free and encapsulated Escherichia coli overexpressing cyclopentanone monooxygenase monitored during model Baeyer-Villiger biooxidation by confocal laser scanning microscopy

机译:通过共聚焦激光扫描显微镜观察模型Baeyer-Villiger生物氧化过程中游离和封装的大肠杆菌过表达环戊酮单加氧酶的活力

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摘要

Baeyer-Villiger biooxidation of 4-methylcyclohexanone-5-methyloxepane-2-one catalysed by recombinant Escherichia coli overexpressing cyclopentanone monooxygenase encapsulated in polyelectrolyte complex capsules was used to investigate effect of substrate conversion on the viability of cells. Confocal laser scanning microscopy (CLSM) was used to assess cell viability using propidium iodide fluorescence marker for necrosis, and flavin autofluorescence to identify living bacteria. Viability of encapsulated cells decreased with increasing substrate concentration from 99 +/- A 1 to 83 +/- A 4%, while substrate conversions from decreased 100 to 6 +/- A 1%. Storage stabilization of encapsulated cells was observed by increased substrate conversion form 68 +/- A 2 to 96 +/- A 3%. Measurements by CLSM with standard deviations up to 5% may be regarded as powerful tool for recombinant cell viability determination during Baeyer-Villiger biooxidations.
机译:采用Baeyer-Villiger对4-甲基环己酮-5-甲基氧杂环戊烷-2-酮进行过高的生物氧化反应,该反应是通过重组表达的聚电解质复合物胶囊中过量表达的环戊酮单加氧酶催化的,研究了底物转化对细胞活力的影响。共焦激光扫描显微镜(CLSM)用于评估细胞活力,使用碘化丙啶荧光标记物检测坏死,黄素自发荧光鉴定活菌。随着底物浓度从99 +/- A 1增加到83 +/- A 4%,封装的细胞的活力降低,而底物转化率从100降低到6 +/- A 1%。通过将底物转化率从68 +/- A 2增加到96 +/- A 3%观察到封装细胞的储存稳定性。通过CLSM进行的标准偏差最大为5%的测量可被认为是在Baeyer-Villiger生物氧化过程中确定重组细胞活力的有力工具。

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