2017
DOI: 10.3390/s17010200
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Imaging and Force Recognition of Single Molecular Behaviors Using Atomic Force Microscopy

Abstract: The advent of atomic force microscopy (AFM) has provided a powerful tool for investigating the behaviors of single native biological molecules under physiological conditions. AFM can not only image the conformational changes of single biological molecules at work with sub-nanometer resolution, but also sense the specific interactions of individual molecular pair with piconewton force sensitivity. In the past decade, the performance of AFM has been greatly improved, which makes it widely used in biology to addr… Show more

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Cited by 33 publications
(22 citation statements)
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References 103 publications
(179 reference statements)
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“…From the force curve, the maximum interaction force (called the peak force) between the AFM probe and the sample is used to control the vertical forces exerted on the sample from the AFM tip. We know that the conventional tapping mode reduces the influence of lateral forces on the sample, but the vibration frequency of the AFM probe in the conventional tapping mode is near the resonant frequency of the probe, 53 resulting in the relatively large tapping force on the sample and therefore this can easily blur the fine structures on the cell surface. In PFT, the vibration frequency of the AFM probe is much less than its resonant frequency, and thus exerts a smaller tapping force (in the range of some tens of piconewtons 52 ) on the sample.…”
Section: Animal Adherent Cellsmentioning
confidence: 99%
See 3 more Smart Citations
“…From the force curve, the maximum interaction force (called the peak force) between the AFM probe and the sample is used to control the vertical forces exerted on the sample from the AFM tip. We know that the conventional tapping mode reduces the influence of lateral forces on the sample, but the vibration frequency of the AFM probe in the conventional tapping mode is near the resonant frequency of the probe, 53 resulting in the relatively large tapping force on the sample and therefore this can easily blur the fine structures on the cell surface. In PFT, the vibration frequency of the AFM probe is much less than its resonant frequency, and thus exerts a smaller tapping force (in the range of some tens of piconewtons 52 ) on the sample.…”
Section: Animal Adherent Cellsmentioning
confidence: 99%
“…First, PEG is covalently bound to both the tip and the antibodies. 53 The covalent bonds are at least ten times stronger ( could link unmodified antibodies onto the AFM tip without loop formation on the tip surface. Besides, this method requires a small consumption of antibodies, therefore providing a promising way for AFM tip functionalization.…”
Section: Specifically Sensing Cell Surface Moleculesmentioning
confidence: 99%
See 2 more Smart Citations
“…In addition to its sub-nanometer resolution and pico-newton force sensitivity, AFM is capable of recognizing single molecular events, compositional changes, and intercellular interactions occurring in heterogeneous biological systems during disease progression ( Fig. 1) [1,2]. Many pioneer studies have investigated the possibility of utilizing AFM as a nano-diagnostic tool to establish unbiased quantitative assessment rubrics to monitor pathological conditions [3].…”
Section: Introductionmentioning
confidence: 99%