首页> 美国卫生研究院文献>Nucleic Acids Research >Atomic force microscopy of DNA and bacteriophage in air water and propanol: the role of adhesion forces.
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Atomic force microscopy of DNA and bacteriophage in air water and propanol: the role of adhesion forces.

机译:空气水和丙醇中DNA和噬菌体的原子力显微镜:粘附力的作用。

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摘要

We have developed a chemical treatment for the mica surface which allows biopolymers to be held in place for atomic force microscopy, even under water, using conventional, untreated force sensing tips. We illustrate the procedure with images of lambda DNA and fd phage. The phage adheres well enough to permit in situ imaging of the adsorption process in water. These experiments yield a mean length for the phage of 883 +/- 72 nm. This compares with a measured length of 883 +/- 33 nm when the phage are imaged after drying following adsorption from water, showing that the effect of dehydration is quite small. Adhesion forces between the force sensing tip and the substrate and the sensing tip and the biomolecules are very different in the three media (air, water and propanol). The apparent height of the phage and the width and height of the DNA depends upon these adhesion forces quite strongly. In contrast, changing the Hookean spring force exerted by the scanning tip makes little difference. These results suggest that the chemical factors involved in adhesion can dominate atomic force images and that the composition of the scanning tip is at least as important a factor as its geometry.
机译:我们已经开发出一种对云母表面进行化学处理的方法,该方法允许使用常规的未经处理的力传感头,即使在水下,也可以将生物聚合物固定在原子力显微镜下。我们用λDNA和fd噬菌体的图像说明了程序。噬菌体粘附得足够好以允许在水中对吸附过程进行原位成像。这些实验得到的噬菌体的平均长度为883 +/- 72 nm。与之相比,当噬菌体在从水中吸附后干燥后成像时,测得的长度为883 +/- 33 nm,表明脱水的影响非常小。在三种介质(空气,水和丙醇)中,力感应尖端与基材之间的粘附力与感应尖端与生物分子之间的粘附力非常不同。噬菌体的表观高度以及DNA的宽度和高度非常强烈地取决于这些粘附力。相反,改变由扫描尖端施加的胡克弹簧力几乎没有什么不同。这些结果表明,粘附中涉及的化学因素可以主导原子力图像,并且扫描头的成分至少与其几何形状一样重要。

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