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Synergistic reduction of toluylene blue induced by acetaldehyde and menadione in yeast cell suspension: Application to determination of yeast cell activity

机译:乙醛和甲萘醌在酵母细胞悬液中协同还原产生的甲苯甲蓝:在测定酵母细胞活性中的应用

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摘要

Membrane permeant acetaldehyde and menadione induced the synergistic reduction of toluylene blue (TB) acting as non-membrane permeant redox indicator in yeast cell suspension. NADH and acetaldehyde also induced the synergistic TB reduction in permeabilized yeast cells and phosphate buffer, but menadione had no ability to promote TB reduction. The pre-incubation of acetaldehyde inhibited the above synergistic reduction of TB in intact and permeabilized yeast cell suspension. The pre-incubation of acetaldehyde might promote NADH oxidation by alcohol dehydrogenase, because acetaldehyde decreased the intracellular NAD(P)H concentration. The above facts indicate that the synergistic reduction of TB is controlled by the order of addition of menadione and acetaldehyde. The synergistic reduction of TB by menadione and acetaldehyde was proportional to viable yeast cell number from 104 to 2×106 cells/ml, and this assay was applicable to cytotoxicity test. The time required for the above assay was only 2 min.
机译:膜渗透性乙醛和甲萘醌可协同降低甲苯蓝(TB)在酵母细胞悬液中作为非膜渗透性氧化还原指示剂的作用。 NADH和乙醛还可以诱导通透性酵母细胞和磷酸盐缓冲液中协同增效的TB降低,但甲萘醌没有促进TB降低的能力。乙醛的预孵育抑制了完整和透化酵母细胞悬液中TB的上述协同降低。乙醛的预孵育可能会促进乙醇脱氢酶对NADH的氧化作用,因为乙醛会降低细胞内NAD(P)H的浓度。上述事实表明,通过甲萘醌和乙醛的添加顺序控制了TB的协同减少。甲萘醌和乙醛协同降低的TB与活酵母细胞数成正比,从10 4 到2×10 6 细胞/ ml,该方法适用于细胞毒性试验。上述测定所需的时间仅为2分钟。

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