首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Masking generates contiguous segments of metal-coated and bare DNA for scanning tunneling microscope imaging.
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Masking generates contiguous segments of metal-coated and bare DNA for scanning tunneling microscope imaging.

机译:掩蔽会产生金属涂层和裸露DNA的连续片段用于扫描隧道显微镜成像。

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摘要

To date, no microscopic methods are available to confirm scanning tunneling microscope (STM) images of DNA. The difficulties encountered in repeating these images may be attributed to inadequate distribution of molecules on the substrate, poor adhesion to the substrate, or the low conductivity of the molecules. However, these factors are difficult to assess in an STM experiment where they may act simultaneously. A method to isolate these factors involves partly masking the deposited molecules before coating them with a conductive film to produce adjacent segments of coated and bare DNA after the mask is removed. The coated DNA segments are conductive and mechanically stable to allow easy identification of DNA by the STM. Furthermore, the path of a molecule can be traced from a coated to an uncoated region to test STM imaging of bare DNA. Masked preparations of DNA deposited on platinum/carbon-coated mica and highly oriented pyrolytic graphite were examined with a tunneling current 1000 times lower than the usual nanoamps. The tip apparently displaces molecules adsorbed to graphite to preclude imaging whereas more stably bound DNA on platinum/carbon-coated mica appears in reversed contrast.
机译:迄今为止,尚无可用的显微镜​​方法来确认DNA的扫描隧道显微镜(STM)图像。重复这些图像时遇到的困难可能归因于分子在基底上的分布不充分,与基底的粘合性差或分子的电导率低。但是,这些因素很难在STM实验中评估,因为它们可能同时起作用。隔离这些因素的方法包括在用导电膜覆盖沉积的分子之前部分掩盖沉积的分子,以在去除掩膜后产生涂覆的裸DNA的相邻片段。包被的DNA片段具有导电性和机械稳定性,可通过STM轻松识别DNA。此外,可以追踪分子的路径,从涂覆区域到未涂覆区域,以测试裸露DNA的STM成像。用比通常的纳安低1000倍的隧穿电流检查了沉积在铂/碳涂覆的云母和高度取向的热解石墨上的DNA的屏蔽制剂。尖端显然置换了吸附在石墨上的分子以排除成像,而铂/碳涂层云母上更稳定结合的DNA则以相反的对比度出现。

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