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Tip-induced deformation of a phospholipid bilayer: Theoretical perspective of sum frequency generation imaging

机译:尖端引起的磷脂双层变形:和频生成成像的理论透视

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The paper addresses theory of Sum Frequency Generation imaging of an atomic force microscopy tip-induced deformation of a bilayer phospholipid membrane deposited over a pore: known as a nano-drum system. Image modeling employed nonlinearities of the normal modes specific to hydrocarbon terminal methyls, which are distributed about the deformed surfaces of inner and outer leaflets. The deformed profiles are according to the solutions of shape equation for Canham-Helfrich Hamiltonian accounting properties of four membranes, which differ in elasticity and adhesion. The results indicate that in continuous deformed surfaces, the difference in the curvature of the outer and inner leaflets dominates in the imaged nonlinearity. This is different comparing to the results for a perfect bilayer spherical cap system (the subject of previous study), where nonlinear image response is dominated by the mismatch of the inner and outer leaflets’ surface areas (as projected to the image plane) at the edge of perfectly spherical structure. The results of theoretical studies, here, demonstrate that Sum Frequency Generation imaging in continuous and deformed bilayer surfaces are helpful to address curvature locally and anticipate mechanical properties of membrane. The articles discuss applicability and practical limitations of the approach. Combination of Atomic Force Microscopy and Sum Frequency Generation imaging under controlled tip-induced deformation provides a good opportunity to probe and test membranes physical properties with rigor of adopted theory.
机译:该论文讨论了原子力显微镜尖端诱导沉积在孔上的双层磷脂膜变形的Sum Frequency Generation成像理论:称为纳米鼓系统。图像建模采用特定于烃末端甲基的正态模式的非线性,该非线性模式围绕内部和外部小叶的变形表面分布。变形的轮廓是根据Canham-Helfrich Hamiltonian四个膜的会计特性的形状方程的解,这四个膜的弹性和附着力不同。结果表明,在连续变形的表面中,外部和内部小叶的曲率差异在成像的非线性中占主导地位。这与理想的双层球形帽盖系统(先前研究的主题)的结果相比是不同的,在理想的双层球形帽盖系统中,非线性图像响应由内部和外部小叶的表面积(投影到图像平面)的不匹配决定。完美球形结构的边缘。这里的理论研究结果表明,连续和变形的双层表面中的总和频率生成成像有助于局部解决曲率和预测膜的机械性能。文章讨论了该方法的适用性和实际局限性。在受控尖端引起的变形下将原子力显微镜和总和频率产生成像相结合,为采用严格的理论来探测和测试膜的物理性质提供了一个很好的机会。

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