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Direct quantification of Aspergillus niger spore adhesion in liquid using an atomic force microscope

机译:使用原子力显微镜直接定量黑曲霉孢子在液体中的粘附

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摘要

An atomic force microscope has been used to quantify directly the adhesion between single Aspergillus niger spores and freshly cleaved mica surfaces. The measurements used "spore probes" constructed by immobilizing a single spore at the apex of a tipless AFM cantilever. Adhesion was quantified from force-distance data for the retraction of the spore from the surface. Studies in NaCl solutions over a range of pH and electrolyte concentration showed that the decrease of long-range electrostatic repulsion with decreasing pH provided a contribution in increasing the overall adhesion, but the variation of such repulsion with ionic strength did not correlate with changes in the magnitude of adhesion. Specific interactions between appendages and protusions on the spore surface must play an important role in adhesion. The AFM spore probe technique provides a useful new method for evaluating the interactions of spores and surfaces. It has the potential to become a powerful asset for both fundamental studies and the assessment of new materials with low adhesion properties. (C) 2000 Academic Press. [References: 29]
机译:原子力显微镜已用于直接定量单个黑曲霉孢子和新鲜切割的云母表面之间的粘附力。测量使用“孢子探针”,该探针通过将单个孢子固定在无尖AFM悬臂的顶点来构造。从力-距离数据量化粘附力,以使孢子从表面退回。在一定pH值和电解质浓度范围内的NaCl溶液中的研究表明,随着pH值的降低,长程静电排斥力的降低有助于整体黏附力的提高,但这种排斥力随离子强度的变化与离子强度的变化无关。附着力的大小。附件和孢子表面上的检出物之间的特定相互作用必须在粘附中起重要作用。 AFM孢子探针技术为评估孢子与表面之间的相互作用提供了一种有用的新方法。它有可能成为基础研究和评估低粘附性新材料的强大资产。 (C)2000学术出版社。 [参考:29]

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