English

Universality in the dynamics of vesicle translocation through a hole

Soft Condensed Matter 2023-08-02 v1 Biological Physics

Abstract

We analyze the translocation process of a spherical vesicle, made of membrane and incompressible fluid, through a hole smaller than the vesicle size, driven by pressure difference ΔP\Delta P. We show that such a vesicle shows certain universal characteristics which is independent of the details of the membrane elasticity; (i) there is a critical pressure ΔPc\Delta P_{\rm c} below which no translocation occurs, (ii) ΔPc\Delta P_{\rm c} decreases to zero as the vesicle radius R0R_0 approaches the hole radius aa, satisfying the scaling relation ΔPc(R0a)3/2\Delta P_{\rm c} \sim (R_0 - a)^{3/2}, and (iii) the translocation time τ\tau diverges as ΔP\Delta P decreases to ΔPc\Delta P_{\rm c}, satisfying the scaling relation τ(ΔPΔPc)1/2\tau \sim (\Delta P -\Delta P_{\rm c})^{-1/2}.

Keywords

Cite

@article{arxiv.2210.08991,
  title  = {Universality in the dynamics of vesicle translocation through a hole},
  author = {Bin Zheng and Fangfu Ye and Shigeyuki Komura and Masao Doi},
  journal= {arXiv preprint arXiv:2210.08991},
  year   = {2023}
}