细胞尺度上细丝之间的普遍卡西米尔吸引力

B. Spreng, H. Berthoumieux, A. Lambrecht, Anne-Florence Bitbol, P. M. Maia Neto, S. Reynaud
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引用次数: 0

摘要

浸入盐水中的介电物体之间的电磁卡西米尔相互作用包括一个不受溶剂屏蔽的普遍贡献,因此是长程的。在此,我们研究了两个平行介电圆柱体的几何形状。我们利用散射法推导出卡西米尔自由能。我们发现,在很大的参数范围内,卡西米尔自由能的大小在很大程度上超过了热能尺度。这包括与细胞中肌动蛋白丝和微管相关的长度尺度。我们的研究表明,卡西米尔自由能是几何图形的一个通用函数,与圆柱体的介电响应函数无关,在生物感兴趣的所有距离上都是如此。虽然细胞中的细丝之间存在多种相互作用,但这种普遍的吸引力相互作用应该在平行细丝束的内聚中发挥重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Universal Casimir attraction between filaments at the cell scale
The electromagnetic Casimir interaction between dielectric objects immersed in salted water includes a universal contribution that is not screened by the solvent and therefore long-ranged. Here, we study the geometry of two parallel dielectric cylinders. We derive the Casimir free energy by using the scattering method. We show that its magnitude largely exceeds the thermal energy scale for a large parameter range. This includes length scales relevant for actin filaments and microtubules in cells. We show that the Casimir free energy is a universal function of the geometry, independent of the dielectric response functions of the cylinders, at all distances of biological interest. While multiple interactions exist between filaments in cells, this universal attractive interaction should have an important role in the cohesion of bundles of parallel filaments.
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