论文标题

脂质囊泡的热波动和渗透稳定性

Thermal fluctuations and osmotic stability of lipid vesicles

论文作者

Wennerström, Håkan, Sparr, Emma, Stenhammar, Joakim

论文摘要

因此,生物膜不断改变其形状,以响应外部刺激,因此了解异质环境中囊泡的重塑和稳定性对于一系列细胞过程至关重要。一个关键的问题是囊泡如何应对外部渗透应力,这是由于囊泡内部和外部之间溶质浓度的差异所施加的。对膜弯曲能的先前分析已经预测,与在较高的渗透压应力下发现变形的实验发现相反,微米大小的巨型单层囊泡(GUV)应该已经针对纳摩尔浓度差异而成为全球变形。在本文中,我们分析了在统计机械模型中暴露于外部渗透压的球形囊泡的机械稳定性,包括热激发膜弯曲模式的效果。我们发现,与Athermal图片中的突然过渡相比,囊泡形状变化的热波动变化使囊泡变形连续。然而,至关重要的是,与全球囊泡变形相关的预测临界压力与忽略热波动时相同,大约比最近在实验中对GUV进行实验观察到的典型塌陷压力小约六个数量级。我们通过讨论理论和实验之间这种持续不和谐的可能来源来结束。

Biological membranes constantly change their shape in response to external stimuli, and understanding the remodeling and stability of vesicles in heterogeneous environments is therefore of fundamental importance for a range of cellular processes. One crucial question is how vesicles respond to external osmotic stresses, imposed by differences in solute concentrations between the vesicle interior and exterior. Previous analyses of the membrane bending energy have predicted that micron-sized giant unilamellar vesicles (GUVs) should become globally deformed already for nanomolar concentration differences, in contrast to experimental findings that find deformations at much higher osmotic stresses. In this article, we analyze the mechanical stability of a spherical vesicle exposed to an external osmotic pressure in a statistical-mechanical model, including the effect of thermally excited membrane bending modes. We find that the inclusion of thermal fluctuations of the vesicle shape changes renders the vesicle deformation continuous, in contrast to the abrupt transition in the athermal picture. Crucially, however, the predicted critical pressure associated with global vesicle deformation remains the same as when thermal fluctuations are neglected, approximately six orders of magnitude smaller than the typical collapse pressure recently observed experimentally for GUVs. We conclude by discussing possible sources of this persisting dissonance between theory and experiments.

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