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在癌细胞伤口愈合实验中描述迁移和增殖机制的弱形式偏微分方程的推导。

Inference of weak-form partial differential equations describing migration and proliferation mechanisms in wound healing experiments on cancer cells.

作者信息

Kinnunen Patrick C, Srivastava Siddhartha, Wang Zhenlin, Ho Kenneth K Y, Humphries Brock A, Chen Siyi, Linderman Jennifer J, Luker Gary D, Luker Kathryn E, Garikipati Krishna

机构信息

Department of Chemical Engineering, University of Michigan, United States.

Department of Mechanical Engineering, University of Michigan, United States.

出版信息

ArXiv. 2024 Oct 24:arXiv:2302.09445v2.

Abstract

Targeting signaling pathways that drive cancer cell migration or proliferation is a common therapeutic approach. A popular experimental technique, the scratch assay, measures the migration and proliferation-driven cell closure of a defect in a confluent cell monolayer. These assays do not measure dynamic effects. To improve analysis of scratch assays, we combine high-throughput scratch assays, video microscopy, and system identification to infer partial differential equation (PDE) models of cell migration and proliferation. We capture the evolution of cell density fields over time using live cell microscopy and automated image processing. We employ weak form-based system identification techniques for cell density dynamics modeled with first-order kinetics of advection-diffusion-reaction systems. We present a comparison of our methods to results obtained using traditional inference approaches on previously analyzed 1-dimensional scratch assay data. We demonstrate the application of this pipeline on high throughput 2-dimensional scratch assays and find that low levels of trametinib inhibit wound closure primarily by decreasing random cell migration by approximately 20%. Our integrated experimental and computational pipeline can be adapted for quantitatively inferring the effect of biological perturbations on cell migration and proliferation in various cell lines.

摘要

靶向驱动癌细胞迁移或增殖的信号通路是一种常见的治疗方法。一种流行的实验技术,即划痕试验,用于测量汇合细胞单层中缺陷部位由迁移和增殖驱动的细胞闭合情况。这些试验无法测量动态效应。为了改进划痕试验的分析,我们结合了高通量划痕试验、视频显微镜和系统识别技术,以推断细胞迁移和增殖的偏微分方程(PDE)模型。我们使用活细胞显微镜和自动图像处理技术来捕捉细胞密度场随时间的演变。我们采用基于弱形式的系统识别技术,对以平流-扩散-反应系统的一阶动力学建模的细胞密度动态进行分析。我们将我们的方法与使用传统推断方法对先前分析的一维划痕试验数据所获得的结果进行了比较。我们展示了该流程在高通量二维划痕试验中的应用,并发现低剂量曲美替尼主要通过将随机细胞迁移降低约20%来抑制伤口闭合。我们的综合实验和计算流程可适用于定量推断生物扰动对各种细胞系中细胞迁移和增殖的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3519/11537331/646e28379476/nihpp-2302.09445v2-f0001.jpg

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