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Combined Poisson and Soft-Particle DLVO Analysis of the Specific and Nonspecific Adhesion Forces Measured between L. monocytogenes Grown at Various Temperatures and Silicon Nitride

机译:在不同温度下生长的单核细胞增生李斯特氏菌与氮化硅之间的比重和非特异性粘附力的泊松和软颗粒DLVO结合分析

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摘要

Adhesion forces between pathogenic L. monocytogenes EGDe and silicon nitride (Si_3N_4) were measured using atomic force microscopy (AFM) under water and at room temperature for cells grown at five different temperatures (10, 20, 30, 37, and 40 ℃). Adhesion forces were then decoupled into specific (hydrogen bonding) and nonspecific (electrostatic and Lifshitz-van der Waals) force components using Poisson statistical analysis. The strongest specific and nonspecific attraction forces were observed for cells grown at 30 ℃, compared to those observed for cells grown at higher or lower temperatures, respectively. By combining the results of Poisson analysis with the results obtained through soft-particle Derjagu in-Landau-Verwey- Overbeek (DLVO) analysis, the contributions of the Lifshitz-van der Waals and electrostatic forces to the overall nonspecific interaction forces were determined. Our results showed that the Lifshitz-van der Waals attraction forces dominated the total nonspecific adhesion forces for all investigated thermal conditions. However, irrespective of the temperature of growth investigated, hydrogen bonding forces were always stronger than the nonspecific forces. Finally, by combining Poisson analysis with soft-particle analysis of DLVO forces, the closest separation distances where the irreversible bacterial adhesion takes place can be determined relatively easily. For all investigated thermal conditions, the closest separation distances were < 1 nm.
机译:使用原子力显微镜(AFM)在水中和室温下,针对在五个不同温度(10、20、30、37和40℃)下生长的细胞,测定了致病性单核细胞增生李斯特菌EGDe与氮化硅(Si_3N_4)之间的粘附力。然后使用泊松统计分析将粘附力分解为特定的(氢键)力和非特定的(静电力和Lifshitz-van der Waals)力分量。与在较高或较低温度下生长的细胞相比,在30℃下生长的细胞观察到最强的比吸引力和非特异性吸引力。通过将泊松分析的结果与通过软粒子Derjagu在Landau-Verwey-Overbeek中进行的分析(DLVO)获得的结果相结合,可以确定Lifshitz-van der Waals和静电力对整体非特异性相互作用力的贡献。我们的结果表明,在所有研究的热条件下,Lifshitz-van der Waals吸引力主导了总的非特异性粘附力。但是,不管研究的生长温度如何,氢键合力总是比非比力强。最后,通过将泊松分析与DLVO力的软颗粒分析相结合,可以相对容易地确定发生不可逆细菌粘附的最接近分离距离。对于所有调查的热条件,最接近的分离距离均小于1 nm。

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  • 来源
    《Environmental Science & Technology》 |2012年第18期|p.10089-10098|共10页
  • 作者单位

    Gene and Linda Voiland School of Chemical Engineering and Bioengineering, Washington State University, Pullman, Washington 99164-2710, United States;

    A118 Dana Hall, Spokane Street, Gene and Linda Voiland School of Chemical Engineering and Bioengin-eering, Washington State University, Pullman, WA 99164-2710;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 14:03:01

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