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Real-Time Measurements of the Interaction between Single Cells of Listeria monocytogenes and Nisin on a Solid Surface

机译:固体表面单核细胞增生性李斯特菌单细胞与乳链菌肽相互作用的实时测量

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A method to obtain real-time measurements of the interactions between nisin and single cells of Listeria monocytogenes on a solid surface was developed. This method was based on fluorescence ratio-imaging microscopy and measurements of changes in the intracellular pH (pHi) of carboxyfluorescein succinimidyl ester-stained cells during exposure to nisin. Immobilized cells were placed in a chamber mounted on a microscope and attached to a high-precision peristaltic pump which allowed rapid changes in the nisin concentration. In the absence of nisin, the pHi ofL. monocytogenes was almost constant (approximately pH 8.0) and independent of the external pH in the pH range from 5.0 to 9.0. In the presence of nisin, dissipation of the pH gradient (ΔpH) was observed, and this dissipation was both time and nisin concentration dependent. The dissipation of ΔpH resulted in cell death, as determined by the number of CFU. In the model system which we used the immobilized cells were significantly more resistant to nisin than the planktonic cells. The kinetics of ΔpH dissipation for single cells revealed a variable lag phase depending on the nisin concentration, which was followed by a very rapid decrease in pHi within 1 to 2 min. The differences in nisin sensitivity between single cells in a L. monocytogenes population were insignificant for cells grown to the stationary phase in a liquid laboratory substrate, but differences were observed for cells grown on an agar medium under similar conditions, which resulted in some cells having increased resistance to nisin.
机译:提出了一种实时测定乳链菌肽与固体表面单核细胞增生李斯特氏菌单细胞相互作用的方法。该方法基于荧光比率成像显微镜和测量在暴露于乳链菌肽过程中羧基荧光素琥珀酰亚胺酯染色的细胞的细胞内pH(pH i )的变化。将固定化的细胞放置在安装在显微镜上的腔室中,并连接到高精度蠕动泵上,该泵可以快速改变乳链菌肽的浓度。在缺少乳链菌肽的情况下, L的pH i 。在5.0至9.0的pH范围内,单核细胞增生病几乎恒定(大约pH 8.0),并且不受外部pH的影响。在乳链菌肽的存在下,观察到pH梯度(ΔpH)的耗散,并且该耗散与时间和乳链菌肽浓度有关。 ΔpH的耗散导致细胞死亡,这取决于CFU的数量。在我们使用的模型系统中,固定的细胞对乳酸链球菌素的抵抗力明显高于浮游细胞。单个细胞的ΔpH耗散动力学显示出取决于乳链菌肽浓度的可变滞后阶段,随后在1-2分钟内pH i 迅速下降。 L中单个细胞之间乳链菌肽敏感性的差异。单核细胞增生菌的数量对于在液体实验室底物中生长到固定相的细胞微不足道,但是在相似条件下在琼脂培养基上生长的细胞却观察到差异,这导致一些细胞对乳链菌肽的抗性增加。

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