Department of Chemical and Biomolecular Engineering, University of Illinois at Urbana-Champaign, Urbana, IL 61801, USA.
Soft Matter. 2020 Jan 2;16(2):337-347. doi: 10.1039/c9sm02048a.
Lipid vesicles play a key role in fundamental biological processes. Despite recent progress, we lack a complete understanding of the non-equilibrium dynamics of vesicles due to challenges associated with long-time observation of shape fluctuations in strong flows. In this work, we present a flow-phase diagram for vesicle shape and conformational transitions in planar extensional flow using a Stokes trap, which enables control over the center-of-mass position of single or multiple vesicles in precisely defined flows [A. Shenoy, C. V. Rao and C. M. Schroeder, Proc. Natl. Acad. Sci. U. S. A., 2016, 113(15), 3976-3981]. In this way, we directly observe the non-equilibrium conformations of lipid vesicles as a function of reduced volume ν, capillary number Ca, and viscosity contrast λ. Our results show that vesicle dynamics in extensional flow are characterized by the emergence of three distinct shape transitions, including a tubular to symmetric dumbbell transition, a spheroid to asymmetric dumbbell transition, and quasi-spherical to ellipsoid transition. The experimental phase diagram is in good agreement with recent predictions from simulations [V. Narsimhan, A. P. Spann and E. S. Shaqfeh, J. Fluid Mech., 2014, 750, 144]. We further show that the phase boundary of vesicle shape transitions is independent of the viscosity contrast. Taken together, our results demonstrate the utility of the Stokes trap for the precise quantification of vesicle stretching dynamics in precisely defined flows.
脂质体在基本的生物过程中起着关键作用。尽管最近取得了进展,但由于在强流中观察形状波动的长时间观测方面存在挑战,我们仍然缺乏对脂质体非平衡动力学的全面理解。在这项工作中,我们使用 Stokes 阱呈现了平面拉伸流中脂质体形状和构象转变的流相图,该阱可以精确控制单个或多个脂质体在精确定义的流中的质心位置[A. Shenoy, C. V. Rao 和 C. M. Schroeder, Proc. Natl. Acad. Sci. U. S. A., 2016, 113(15), 3976-3981]。通过这种方式,我们直接观察了脂质体在体积减少ν、毛细数 Ca 和粘度比λ的函数下的非平衡构象。我们的结果表明,在拉伸流中,脂质体动力学的特征是出现了三种不同的形状转变,包括管状到对称哑铃状转变、球状体到不对称哑铃状转变和准球形到椭圆形转变。实验相图与最近的模拟预测[V. Narsimhan, A. P. Spann 和 E. S. Shaqfeh, J. Fluid Mech., 2014, 750, 144]非常吻合。我们进一步表明,脂质体形状转变的相界与粘度比无关。总之,我们的结果证明了 Stokes 阱在精确定义的流中定量测量脂质体拉伸动力学的有效性。