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Frequency modulation atomic force microscopy: a dynamic measurement technique for biological systems

机译:调频原子力显微镜:生物系统的动态测量技术

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Frequency modulation atomic force microscopy (FM-AFM) has been modified to operate in a liquid environment within an atomic force microscope specifically designed for investigating biological samples. We demonstrate the applicability of FM-AFM to biological samples using the spectroscopy mode to measure the unbinding forces of a single receptor-ligand (biotin-avidin) interaction. We show that quantitative adhesion force measurements can only be obtained provided certain modifications are made to the existing theory, which is used to convert the detected frequency shifts to an interaction force. Quantitative force measurements revealed that the unbinding forces for the biotin-avidin interaction were greater than those reported in previous studies. This finding was due to the use of high average tip velocities, which were calculated to be two orders of magnitude greater than those typically used in unbinding receptor-ligand experiments. This study therefore highlights the potential use of FM-AFM to study a range of biological systems, including living cells and/or single biomolecule interactions.
机译:调频原子力显微镜(FM-AFM)已被修改为在专门设计用于研究生物样品的原子力显微镜内的液体环境中运行。我们展示了使用光谱模式来测量单个受体-配体(生物素-亲和素)相互作用的解离力,FM-AFM对生物样品的适用性。我们表明,只有对现有理论进行某些修改,才能获得定量的粘附力测量值,该理论用于将检测到的频移转换为相互作用力。定量力测量显示,生物素-亲和素相互作用的解离力大于先前研究中报道的力。该发现归因于使用高平均尖端速度,该尖端平均速度经计算比不结合受体-配体实验中通常使用的速度高两个数量级。因此,本研究强调了FM-AFM在研究一系列生物系统(包括活细胞和/或单个生物分子相互作用)方面的潜在用途。

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