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Application of Flow Cytometry to Segregated Kinetic Modeling Based on the Physiological States of Microorganisms

机译:流式细胞术在微生物生理状态分离动力学建模中的应用

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摘要

Flow cytometry (FC) has been introduced to characterize and to assess the physiological states of microorganisms in conjunction with the classical plate-counting method. To show the applicability of the technique, in particular for the development of kinetic models, pure culture fermentation experiments were followed over time, using both prokaryotic (Lactobacillus hilgardii) and eukaryotic (Saccharomyces cerevisiae) microorganisms growing in standard culture media (MRS and YPD). The differences observed between the active and viable cells determined by FC and CFU, respectively, allowed us to determine that a large number of cells were in a viable but nonculturable (VBNC) state, which resulted in a subpopulation much larger than the damaged-cell (double-stained) subpopulation. Finally, the determination of the evolution of viable, the VBNC, and the dead cells allowed us to develop a segregated kinetic model to describe the yeast and the bacteria population dynamics and glucose consumption in batch cultures. This model, more complete than that which is traditionally used, based only on viable cell measurements, describes better the behavior and the functionality of the cultures, giving a deeper knowledge in real time about the status and the course of the bioprocesses.
机译:流式细胞术(FC)已被引入以结合经典的盘数法来表征和评估微生物的生理状态。为了显示该技术的适用性,特别是对于动力学模型的开发,随着时间的流逝,使用了在标准培养基(MRS和YPD)中生长的原核微生物(希尔加德乳杆菌)和真核微生物(酿酒酵母)进行了纯培养发酵实验。 。分别由FC和CFU确定的在活动细胞和活细胞之间观察到的差异使我们能够确定大量细胞处于活但不可培养(VBNC)状态,这导致亚群比受损细胞大得多(双重染色)亚群。最后,确定存活,VBNC和死细胞的进化过程使我们能够建立分离的动力学模型,以描述分批培养中的酵母和细菌种群动态以及葡萄糖消耗。仅基于活细胞测量,该模型比传统模型更为完整,可更好地描述培养物的行为和功能,从而实时更深入地了解生物过程的状态和过程。

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