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首页> 外文期刊>PLoS One >Determination of Intracellular Vitrification Temperatures for Unicellular Micro Organisms under Conditions Relevant for Cryopreservation
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Determination of Intracellular Vitrification Temperatures for Unicellular Micro Organisms under Conditions Relevant for Cryopreservation

机译:在与冷冻保存有关的条件下测定单细胞微生物的细胞内玻璃化温度

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During cryopreservation ice nucleation and crystal growth may occur within cells or the intracellular compartment may vitrify. Whilst previous literature describes intracellular vitrification in a qualitative manner, here we measure the intracellular vitrification temperature of bacteria and yeasts under conditions relevant to cryopreservation, including the addition of high levels of permeating and nonpermeating additives and the application of rapid rates of cooling. The effects of growth conditions that are known to modify cellular freezing resistance on the intracellular vitrification temperature are also examined. For bacteria a plot of the activity on thawing against intracellular glass transition of the maximally freeze-concentrated matrix (Tg’) shows that cells with the lowest value of intracellular Tg’ survive the freezing process better than cells with a higher intracellular Tg’. This paper demonstrates the role of the physical state of the intracellular environment in determining the response of microbial cells to preservation and could be a powerful tool to be manipulated to allow the optimization of methods for the preservation of microorganisms.
机译:冷冻保存期间,细胞内可能发生冰核化和晶体生长,或者细胞内区室可能会玻璃化。虽然先前的文献以定性的方式描述了细胞内玻璃化,但在这里我们测量了与冷冻保存有关的条件下细菌和酵母的细胞内玻璃化温度,包括添加高水平的渗透性和非渗透性添加剂以及应用快速冷却。还检查了已知可改变细胞抗冻性的生长条件对细胞内玻璃化温度的影响。对于细菌而言,最大冻结浓缩基质(Tg’)对细胞内玻璃化转变的解冻活性图表明,细胞内Tg’值最低的细胞比细胞内Tg’较高的细胞更好地存活。本文证明了细胞内环境的物理状态在确定微生物细胞对保存的反应中的作用,并且可能是一种有力的工具,可以通过操作来优化微生物的保存方法。

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