AgroParisTech, INRAe, UMR SayFood, Université Paris-Saclay, Thiverval-Grignon, France.
Cytometry A. 2022 Jul;101(7):577-587. doi: 10.1002/cyto.a.24553. Epub 2022 Apr 8.
Cultivability, viability, and vitality make it possible to characterize the behavior of a cellular population. Vitality was assessed using the kinetic parameters of specific metabolisms depending on whether the strains were used, for example, for the acidification of lactic acid bacteria or for CO production in fermenting yeasts. However, these methods are time-consuming. We developed a cytometric descriptor based on the energy-dependent extrusion of carboxyfluorescein from cells, subsequent to carboxyfluorescein diacetate staining, and compared it to the measurements of metabolic activities of various bacteria and yeasts. For all of the microorganisms tested, the cytometric descriptor ΔFI was well correlated with the results of the metabolic measurements and, moreover, has the advantage of being easier and faster to use than metabolic methods. It can be very useful for evaluating the vitality of the starters before inoculation in industrial processes.
可培养性、生存能力和活力使我们能够描述细胞群体的行为。活力是通过特定代谢的动力学参数来评估的,具体取决于菌株的用途,例如用于酸化乳酸菌或用于发酵酵母产生 CO。然而,这些方法很耗时。我们开发了一种基于细胞能量依赖性排出羧基荧光素的细胞测量指标,该指标是在羧基荧光素二乙酸酯染色后进行的,并将其与各种细菌和酵母的代谢活性测量进行了比较。对于所有测试的微生物,细胞测量指标 ΔFI 与代谢测量结果高度相关,而且,与代谢方法相比,它具有使用更简单、更快的优点。在工业过程中接种之前,它可以非常有用地评估起始培养物的活力。