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扫描力显微镜下的DNA高度

DNA height in scanning force microscopy.

作者信息

Moreno-Herrero F, Colchero J, Baró A M

机构信息

Laboratorio de Nuevas Microscopías, Departamento de Física de la Materia Condensada, Universidad Autónoma de Madrid, 28049, Madrid, Spain.

出版信息

Ultramicroscopy. 2003 Aug;96(2):167-74. doi: 10.1016/S0304-3991(03)00004-4.

Abstract

The measured height of DNA molecules adsorbed on a mica substrate by scanning probe microscopy is always less than the theoretical diameter. In this paper we show that, when imaged in ambient conditions, the molecules are usually immersed in the salt layer used to adsorb them to the substrate. This layer distorts the measurement of DNA height and is the main source of error but not the only one. We have performed different experiments to study this problem using two scanning force techniques: non-contact tapping mode in air and jumping mode in aqueous solution, where the dehydration phenomena is minimized. Height measurements of DNA in air using tapping mode reveal a height of 0.7+/-0.2nm. This value increases up to 1.5+/-0.2nm when the salt layer, in which the molecules are embedded, is removed. Jumping experiments in water give a value of 1.4+/-0.3nm when the maximum applied force is 300pN and 1.8+/-0.2nm at very low forces, which confirms the removal of the salt layer. Still, in all our experiments, the measured height of the DNA is less than the theoretical value. Our results show that although the salt layer present is important, some sample deformation due to either the loading force of the tip or the interaction with the substrate is also present.

摘要

通过扫描探针显微镜测量吸附在云母基底上的DNA分子的高度,其值总是小于理论直径。在本文中我们表明,在环境条件下成像时,分子通常沉浸在用于将它们吸附到基底上的盐层中。该层会扭曲DNA高度的测量,是误差的主要来源,但并非唯一来源。我们使用两种扫描力技术进行了不同的实验来研究这个问题:空气中的非接触轻敲模式和水溶液中的跳跃模式,后者可将脱水现象降至最低。使用轻敲模式在空气中测量DNA的高度显示为0.7±0.2纳米。当去除分子所嵌入的盐层时,该值增加到1.5±0.2纳米。在水中进行的跳跃实验表明,当最大施加力为300皮牛时,测量值为1.4±0.3纳米,在极低力的情况下为1.8±0.2纳米,这证实了盐层已被去除。然而,在我们所有的实验中,所测量的DNA高度均小于理论值。我们的结果表明,尽管存在的盐层很重要,但由于针尖的加载力或与基底的相互作用,样品仍存在一些变形。

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