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简单物理模型揭示趋化因子对人造血干细胞形态变形和迁移的影响。

Simple Physical Model Unravels Influences of Chemokine on Shape Deformation and Migration of Human Hematopoietic Stem Cells.

机构信息

Department of Physics, The University of Tokyo, Tokyo, 113-0033, Japan.

Toyota Physical and Chemical Research Institute, Nagakute, Aichi, 480-1192, Japan.

出版信息

Sci Rep. 2018 Jul 13;8(1):10630. doi: 10.1038/s41598-018-28750-x.

Abstract

We studied the dynamic behavior of human hematopoietic stem cells (HSC) on the in vitro model of bone marrow surfaces in the absence and presence of chemokine (SDF1α). The deformation and migration of cells were investigated by varying the chemokine concentration and surface density of ligand molecules. Since HSC used in this study were primary cells extracted from the human umbilical cord blood, it is not possible to introduce molecular reporter systems before or during the live cell imaging. To account for the experimental observations, we propose a simple and general theoretical model for cell crawling. In contrast to other theoretical models reported previously, our model focuses on the nonlinear coupling between shape deformation and translational motion and is free from any molecular-level process. Therefore, it is ideally suited for the comparison with our experimental results. We have demonstrated that the results in the absence of SDF1α were well recapitulated by the linear model, while the nonlinear model is necessary to reproduce the elongated migration observed in the presence of SDF1α. The combination of the simple theoretical model and the label-free, live cell observations of human primary cells opens a large potential to numerically identify the differential effects of extrinsic factors such as chemokines, growth factors, and clinical drugs on dynamic phenotypes of primary cells.

摘要

我们研究了人类造血干细胞(HSC)在骨髓表面体外模型中无趋化因子(SDF1α)和存在趋化因子时的动态行为。通过改变趋化因子浓度和配体分子的表面密度来研究细胞的变形和迁移。由于本研究中使用的 HSC 是从人脐带血中提取的原代细胞,因此不可能在活细胞成像之前或期间引入分子报告系统。为了说明实验观察结果,我们提出了一个用于细胞爬行的简单而通用的理论模型。与以前报道的其他理论模型不同,我们的模型侧重于形状变形和平移运动之间的非线性耦合,并且不受任何分子水平过程的影响。因此,它非常适合与我们的实验结果进行比较。我们已经证明,在没有 SDF1α 的情况下,线性模型可以很好地再现结果,而在存在 SDF1α 的情况下,需要使用非线性模型来再现观察到的伸长迁移。简单理论模型与人类原代细胞的无标记、活细胞观察相结合,为数值识别趋化因子、生长因子和临床药物等外在因素对原代细胞动态表型的差异影响提供了巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5fd1/6045678/8cc97ee3c510/41598_2018_28750_Fig1_HTML.jpg

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