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In situ Single Bio-Molecule Recognition by Atomic Force Microscopy Using Functionalized Tip

机译:原位单一生物分子通过使用功能化尖端的原子力显微镜识别

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Atomic force microscopy is a powerful and widely used Imaging technique that can visualize single molecules both in air and solution. In this paper, by fenctionalizing the AFM tip with antibodies, atomic force microscopy is able to identify specific types of receptors such as angiotensin II type I receptors on cells' membrane. The antibody is tethered to the AFM tip through a spacer to form a strong but flexible binding. Due to the flexibility of the spacer, the antibody bond to the AFM tip has much more chance to interact with the antigen (receptor) on cell's surface than a direct antibody coating method. Because the AFM phase image is very sensitive to the interaction force between tip and surface, the single receptors can be easily identified by passing the phase information to a band-pass filter to remove the low frequency topography signal. After adding more antibodies to the solution to block all the specific type receptor, the disappearance of the receptors in the image verify the effectiveness of this method.
机译:原子力显微镜是一种强大而广泛使用的成像技术,可以在空气和溶液中可视化单一分子。在本文中,通过用抗体掺入AFM尖端,原子力显微镜能够识别细胞膜上的血管紧张素II型I受体等特定类型的受体。抗体通过间隔物拴在AFM尖端上以形成强但柔性的结合。由于间隔物的灵活性,AFM尖端的抗体键具有比直接抗体涂布方法在细胞表面上与抗原(受体)相互作用的机会。因为AFM相位图像对尖端和表面之间的相互作用力非常敏感,所以通过将相位信息传递到带通滤波器以移除低频形貌信号,可以容易地识别单个受体。在向溶液中添加更多抗体以阻断所有特异性型受体后,图像中受体的消失验证了该方法的有效性。

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