Bergert Martin, Diz-Muñoz Alba
Cell Biology and Biophysics Unit, European Molecular Biology Laboratory, Heidelberg, Germany.
Methods Mol Biol. 2023;2600:45-62. doi: 10.1007/978-1-0716-2851-5_3.
Reliable quantification of a cell's biophysical properties is key for understanding the role of mechanics in cell biology. Plasma membrane tension, the energetic cost of increasing the surface area of the plasma membrane, has been shown to regulate a plethora of cellular processes, ranging from leading edge formation to phagocytosis and membrane trafficking. Here, we describe the measurement of this key mechanical property of the cell surface using atomic force microscopy (AFM)-based force spectroscopy. Depending on the nature of the force curve acquisition, AFM measurements can quantify various membrane tension components, such as apparent membrane tension and membrane-to-cortex attachment (MCA). We discuss the biophysical background (1), required materials (2), sample preparation (3.1), AFM-probe calibration and functionalization (3.2), force curve acquisition (3.3) and data analysis and representation (3.4).
可靠地定量细胞的生物物理特性是理解力学在细胞生物学中作用的关键。质膜张力,即增加质膜表面积的能量消耗,已被证明可调节大量细胞过程,从前沿形成到吞噬作用和膜运输。在这里,我们描述了使用基于原子力显微镜(AFM)的力谱法测量细胞表面这一关键力学特性的方法。根据力曲线采集的性质,AFM测量可以量化各种膜张力成分,如表观膜张力和膜与皮质的附着(MCA)。我们讨论了生物物理背景(1)、所需材料(2)、样品制备(3.1)、AFM探针校准和功能化(3.2)、力曲线采集(3.3)以及数据分析和呈现(3.4)。