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A high-speed atomic force microscope for studying biological macromolecules

机译:用于研究生物大分子的高速原子力显微镜

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摘要

The atomic force microscope (AFM) is a powerful tool for imaging individual biological molecules attached to a substrate and placed in aqueous solution. At present, however, it is limited by the speed at which it can successively record highly resolved images. We sought to increase markedly the scan speed of the AFM, so that in the future it can be used to study the dynamic behavior of biomolecules. For this purpose, we have developed a high-speed scanner, free of resonant vibrations up to 60 kHz, small cantilevers with high resonance frequencies (450–650 kHz) and small spring constants (150–280 pN/nm), an objective-lens type of deflection detection device, and several electronic devices of wide bandwidth. Integration of these various devices has produced an AFM that can capture a 100 × 100 pixel2 image within 80 ms and therefore can generate a movie consisting of many successive images (80-ms intervals) of a sample in aqueous solution. This is demonstrated by imaging myosin V molecules moving on mica (see ).
机译:原子力显微镜(AFM)是强大的工具,可对附着在基质上并置于水溶液中的单个生物分子进行成像。但是,目前,它受到可以连续记录高分辨率图像的速度的限制。我们试图显着提高AFM的扫描速度,以便将来可以将其用于研究生物分子的动态行为。为此,我们开发了一种高速扫描仪,它的共振频率高达60 kHz,没有悬臂,共振频率高(450–650 kHz),弹簧常数小(150–280 pN / nm),目的是镜头类型的偏转检测设备,以及几种带宽较宽的电子设备。这些不同设备的集成产生了一种AFM,该AFM可以在80毫秒内捕获100×100 pixel 2 图像,因此可以生成包含样本中许多连续图像(间隔为80毫秒)的电影。水溶液。通过对在云母上移动的肌球蛋白V分子进行成像可以证明这一点(请参阅参考资料)。

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