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A novel approach to monitor stress-induced physiological responses in immobilized microorganisms

机译:一种监测固定化微生物中压力诱导的生理反应的新方法

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摘要

Microbial cell immobilization has long been considered as a potential bioprocessing strategy to increase both microorganisms' tolerance and fitness in fermentation systems. To date, little emphasis has been put on how the entrapped cells respond to the bioprocessing stresses encountered during the cultivation. The present work presents for the first time a methodology to decipher the real health status of the entrapped microorganisms by combining multiparameter flow cytometry with confocal fluorescence microscopy as monitoring tools. Comparison between resting free and immobilized cell-based systems enabled to characterize the spatial-temporal physiological response of entrapped Pseudomonas taetrolens cells during lactobionic acid production in submerged cultivation. Whereas cellular leakage from beads led to planktonic cells that faced a progressive loss of membrane integrity, immobilized cells underwent a prompt stress-induced physiological response featured by the predominance of cellular damaging. Moreover, visualization without matrix de-entrapment through confocal fluorescence microscopy revealed the overtime formation of cellular micro-colonies inside the beads. These micro-colonies comprised a shell made of dead cells, whereas the inward cells remained metabolically active. The proposed approach herein raises the possibility of using flow cytometry and confocal fluorescence microscopy as indicators of microbial cell immobilization, providing further key information on the health status and robustness of entrapped microorganisms.
机译:长期以来,微生物细胞固定化一直被认为是一种潜在的生物加工策略,可以提高微生物的耐受性和发酵系统的适应性。迄今为止,几乎没有强调捕获的细胞如何响应培养过程中遇到的生物加工压力。通过结合多参数流式细胞术和共聚焦荧光显微镜作为监测工具,本工作首次提出了一种方法来破译被捕获微生物的真实健康状况。静止的自由系统与固定的基于细胞的系统之间的比较能够表征淹没培养中乳酸酸生产过程中捕获的太子假单胞菌细胞的时空生理反应。珠子的细胞渗漏导致浮游细胞面对膜完整性的逐渐丧失,而固定化的细胞则经历了由压力引起的生理性反应,其主要表现为细胞破坏。此外,通过共聚焦荧光显微镜观察没有基质去包埋的情况显示珠粒内细胞微菌落的超时形成。这些微菌落包括由死细胞组成的壳,而内向细胞保持代谢活性。本文中提出的方法提高了使用流式细胞仪和共聚焦荧光显微镜作为固定化微生物细胞的指标的可能性,从而提供了有关被困微生物的健康状况和健壮性的更多关键信息。

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