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Numerical model for the deformation of nucleated cells by optical stretchers

机译:光学担架形变有核细胞的数值模型

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摘要

In this paper, we seek to numerically study the deformation of nucleated cells by single diode-laser bar optical stretchers. We employ a recently developed computational model, the dynamic ray-tracing method, to determine the force distribution induced by optical stretchers on a cell encapsulating a nucleus of different optical properties. These optical forces are shape dependent and can deform real non-rigid objects; thus resulting in dynamically changing distributions with cell and nucleus deformation. A Chinese hamster ovary (CHO) cell is a common biological cell that is of interest to the biomedical community because of its use in recombinant protein therapeutics and is an example of a nucleated cell. To this end, we model CHO cells as two concentric three-dimensional elastic capsules immersed in a fluid where the hydrodynamic forces are calculated using the immersed boundary method. We vary the inner capsule size to simulate different nucleus sizes. Our results show that the presence of a nucleus has a major effect on the force distribution on the cell surface and consequently on its net deformation. Scattering and gradient forces are reported for different nucleus sizes and the effect of nucleus size on the cell deformation is discussed quantitatively.
机译:在本文中,我们试图通过单二极管激光棒光学拉伸器对有核细胞的变形进行数值研究。我们采用最近开发的计算模型,即动态射线追踪方法,来确定由光学担架在封装不同光学性质的核的细胞上引起的力分布。这些光学力取决于形状,并且可以使真正的非刚性物体变形。因此,随着细胞和细胞核变形动态地改变分布。中国仓鼠卵巢(CHO)细胞是一种常见的生物细胞,由于其在重组蛋白治疗中的应用而引起了生物医学界的关注,并且是有核细胞的一个例子。为此,我们将CHO细胞建模为浸入流体中的两个同心三维弹性胶囊,并使用浸没边界法计算流体动力。我们改变内囊的大小以模拟不同的核大小。我们的结果表明,原子核的存在对细胞表面上的力分布具有重要影响,因此对其净变形也有很大影响。报告了不同核尺寸的散射力和梯度力,并定量讨论了核尺寸对细胞变形的影响。

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