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远场扫描离子电导显微镜中较弱的静水压用于引导神经元生长锥。

Weak hydrostatic forces in far-scanning ion conductance microscopy used to guide neuronal growth cones.

机构信息

Dipartimento di Scienze Fisiologiche Università di Pisa, via S. Zeno 31, 56127 Pisa, Italy.

出版信息

Neurosci Res. 2011 Mar;69(3):234-40. doi: 10.1016/j.neures.2010.11.009. Epub 2010 Dec 10.

Abstract

Scanning ion conductance microscopy (SICM) is currently used for high resolution topographic imaging of living cells. Recently, it has been also employed as a tool to deliver stimuli to the cells. In this work we have investigated the mechanical interaction occurring between the pipette tip and the sample during SICM operation. For the purpose, we have built a setup combining SICM with atomic force microscopy (AFM), where the AFM cantilever replaces the sample. Our data indicate that, operating in far-scanning mode with current decrease values below 2%, no force can be detected, provided that the level of the electrolyte filling the pipette is equal to that determined by the capillary tension. A filling level different from this value determines a hydrostatic pressure, a flux through the pipette tip and detectable forces, even in far-scanning mode. The absolute value of these forces depends on the pipette tip size. Therefore, a possible pitfall when using SICM for cell imaging is to imply zero-force working conditions. However the hydrostatic forces can be exploited in order to deliver weak mechanical stimuli and guide neuronal growth cones. Evidences of the effectiveness of this approach are herein given.

摘要

扫描离子电导显微镜(SICM)目前用于活细胞的高分辨率形貌成像。最近,它也被用作向细胞传递刺激的工具。在这项工作中,我们研究了 SICM 操作过程中在尖端和样品之间发生的机械相互作用。为此,我们建立了一个结合 SICM 和原子力显微镜(AFM)的设置,其中 AFM 悬臂代替了样品。我们的数据表明,在电流减小值低于 2%的远扫描模式下,只要填充到移液器中的电解质水平等于由毛细管张力确定的水平,就无法检测到力。填充水平与该值不同会导致静水压、通过移液器尖端的通量和可检测的力,即使在远扫描模式下也是如此。这些力的绝对值取决于移液器尖端的大小。因此,在使用 SICM 进行细胞成像时,假设零力工作条件可能存在潜在问题。然而,可以利用静水力来传递弱机械刺激并引导神经元生长锥。本文给出了这种方法有效性的证据。

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