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生长温度对致病性单核细胞增生李斯特菌黏附和力学特性的影响:原子力显微镜研究。

The role of growth temperature in the adhesion and mechanics of pathogenic L. monocytogenes: an AFM study.

机构信息

Gene and Linda Voiland School of Chemical Engineering and Bioengineering, Washington State University, Pullman, Washington 99164-2710, USA.

出版信息

Langmuir. 2012 Jan 17;28(2):1360-73. doi: 10.1021/la203639k. Epub 2011 Dec 19.

Abstract

The adhesion strengths of pathogenic L. monocytogenes EGDe to a model surface of silicon nitride were quantified using atomic force microscopy (AFM) in water for cells grown under five different temperatures (10, 20, 30, 37, and 40 °C). The temperature range investigated was chosen to bracket the thermal conditions in which L. monocytogenes survive in the environment. Our results indicated that adhesion force and energy quantified were at their maximum when the bacteria were grown at 30 °C. The higher adhesion observed at 30 °C compared to the adhesion quantified for bacterial cells grown at 37, 40, 20, and 10 °C was associated with longer and denser bacterial surface biopolymer brushes as predicted from fitting a model of steric repulsion to the approach distance-force data as well from the results of protein colorimetric assays. Theoretically predicted adhesion energies based on soft-particle DLVO theory agreed well with the adhesion energies computed from AFM force-distance retraction data (r(2) = 0.94); showing a minimum energy barrier to adhesion at 30 °C.

摘要

使用原子力显微镜(AFM)在水中定量测量了致病性单核细胞增生李斯特菌 EGDe 在氮化硅模型表面的粘附强度,细胞在 5 种不同温度(10、20、30、37 和 40°C)下生长。选择所研究的温度范围是为了涵盖李斯特菌在环境中存活的热条件。我们的结果表明,当细菌在 30°C 下生长时,粘附力和能量达到最大值。与在 37、40、20 和 10°C 下生长的细菌定量的粘附相比,在 30°C 下观察到的较高粘附力与更长和更密集的细菌表面生物聚合物刷有关,这是根据对接近距离-力数据拟合的空间排斥模型以及蛋白质比色测定的结果预测的。基于软粒子 DLVO 理论预测的粘附能与从 AFM 力-距离回缩数据计算出的粘附能很好地吻合(r(2) = 0.94);在 30°C 下显示出最小的粘附能垒。

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