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使用无量纲的 Tabor 参数来关联细菌菌株的宏观聚集行为和微观粘附特性。

Correlation of macroscopic aggregation behavior and microscopic adhesion properties of bacteria strains using a dimensionless Tabor's parameter.

机构信息

Mechanical & Industrial Engineering, Northeastern University, Boston, MA 02115, USA.

出版信息

J Colloid Interface Sci. 2012 May 15;374(1):70-6. doi: 10.1016/j.jcis.2012.01.032. Epub 2012 Jan 31.

Abstract

Macroscopic adhesion-aggregation, floc formation, and subsequent transportation of microorganisms in porous media are closely related to the microscopic behavior and properties of individual cells. The classical Tabor's parameter in colloidal science is modified to correlate the macroscopic aggregation and microscopic adhesion properties of microorganisms. Seven bacterial strains relevant to wastewater treatment and bioremediation were characterized in terms of their macroscopic aggregation index (AI) using an optical method, and their microscopic coupled adhesion and deformation properties using atomic force microscopy (AFM). Single cells were indented to measure the range and magnitude of the repulsive-attractive intersurface forces, elastic modulus, thickness and density of the cellular surface substances (CSS). The strong correlation suggests that cost and time effective microscopic AFM characterization is capable of making reliable prediction of macroscopic behavior.

摘要

宏观附着-聚集、絮体形成以及随后微生物在多孔介质中的迁移与单个细胞的微观行为和特性密切相关。胶体科学中的经典 Tabor 参数被修改,以关联微生物的宏观聚集和微观附着特性。使用光学方法,根据宏观聚集指数 (AI) 对与废水处理和生物修复相关的七种细菌菌株进行了表征,并使用原子力显微镜 (AFM) 对其微观偶联粘附和变形特性进行了表征。通过压痕测量来测量界面斥力-引力的范围和幅度、弹性模量、细胞表面物质 (CSS) 的厚度和密度。强相关性表明,具有成本效益的微观 AFM 特性分析能够可靠地预测宏观行为。

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