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Dynamics of Cell Membrane Permeabilization by Saponins Using Terahertz Attenuated Total Reflection

机译:皂苷利用太赫兹衰减总反射皂苷的动力学

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摘要

Understanding the relevant parameters of the formation of pores during permeabilization is very challenging for medical applications. Several components are involved: the arrival of the permeabilizing molecules to the membrane, the efficiency of formation of the pores and their specific dynamics, and the flux of molecules through the plasma membrane. Using attenuated total reflection in the terahertz domain, we studied the dynamics of Madine-Darby canine kidney cells after permeabilization by saponin molecules. We developed an analytical model taking into account saponin molecule diffusion, cell geometry, cytosol molecule diffusion, and pore dynamics. We also studied the effect of possible pore overlapping on the cell membrane, introducing a dimensionless quantity that is the ratio between overlapping and diffusive effects. Pores are found to be static within 1 h after their creation, hinting that the diffusion of the saponin molecules to the membrane is the limiting factor in our experiments.
机译:了解在渗透期间形成孔隙形成的相关参数对于医学应用非常具有挑战性。涉及几种组分:透化分子到膜的到达,孔形成的效率及其特定动力学,以及通过质膜的分子的通量。在Terahertz领域中使用减毒的全反射,我们研究了皂苷分子渗透后族德比犬肾细胞的动态。我们开发了一种考虑Saponin分子扩散,细胞几何,细胞溶溶胶分子扩散和孔动力学的分析模型。我们还研究了可能的孔重叠在细胞膜上的效果,引入了重叠的量,这是重叠和扩散效应之间的比率。在其创造之后,发现孔隙在1小时内是静电,暗示皂苷分子向膜的扩散是我们实验中的限制因素。

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