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1
Imaging deformation of adherent cells due to shear stress using quantitative phase imaging.使用定量相成像技术对粘附细胞因剪切应力产生的形变进行成像。
Opt Lett. 2016 Jan 15;41(2):352-5. doi: 10.1364/OL.41.000352.
2
Influence of defocus on quantitative analysis of microscopic objects and individual cells with digital holography.离焦对数字全息术用于微观物体和单个细胞定量分析的影响。
Biomed Opt Express. 2015 May 11;6(6):2067-75. doi: 10.1364/BOE.6.002067. eCollection 2015 Jun 1.
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Adaptive rheology and ordering of cell cytoskeleton govern matrix rigidity sensing.细胞骨架的适应性流变学和有序排列调控基质硬度感知。
Nat Commun. 2015 Jun 25;6:7525. doi: 10.1038/ncomms8525.
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SNAIL-induced epithelial-to-mesenchymal transition produces concerted biophysical changes from altered cytoskeletal gene expression.SNAIL诱导的上皮-间质转化通过改变细胞骨架基因表达产生协同的生物物理变化。
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无序强度的光学相位测量将微观结构与细胞刚度联系起来。

Optical Phase Measurements of Disorder Strength Link Microstructure to Cell Stiffness.

作者信息

Eldridge Will J, Steelman Zachary A, Loomis Brianna, Wax Adam

机构信息

Duke University, Department of Biomedical Engineering, Durham, North Carolina.

Duke University, Department of Biomedical Engineering, Durham, North Carolina.

出版信息

Biophys J. 2017 Feb 28;112(4):692-702. doi: 10.1016/j.bpj.2016.12.016.

DOI:10.1016/j.bpj.2016.12.016
PMID:28256229
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5340128/
Abstract

There have been sustained efforts on the part of cell biologists to understand the mechanisms by which cells respond to mechanical stimuli. To this end, many rheological tools have been developed to characterize cellular stiffness. However, measurement of cellular viscoelastic properties has been limited in scope by the nature of most microrheological methods, which require direct mechanical contact, applied at the single-cell level. In this article, we describe, to our knowledge, a new analysis approach for quantitative phase imaging that relates refractive index variance to disorder strength, a parameter that is linked to cell stiffness. Significantly, both disorder strength and cell stiffness are measured with the same phase imaging system, presenting a unique alternative for label-free, noncontact, single-shot imaging of cellular rheologic properties. To demonstrate the potential applicability of the technique, we measure phase disorder strength and shear stiffness across five cellular populations with varying mechanical properties and demonstrate an inverse relationship between these two parameters. The existence of this relationship suggests that predictions of cell mechanical properties can be obtained from examining the disorder strength of cell structure using this, to our knowledge, novel, noncontact technique.

摘要

细胞生物学家一直在持续努力,以了解细胞对机械刺激作出反应的机制。为此,已经开发了许多流变学工具来表征细胞的硬度。然而,由于大多数微观流变学方法的性质,细胞粘弹性特性的测量范围受到限制,这些方法需要在单细胞水平上进行直接机械接触。在本文中,据我们所知,我们描述了一种用于定量相成像的新分析方法,该方法将折射率变化与无序强度相关联,无序强度是一个与细胞硬度相关的参数。值得注意的是,无序强度和细胞硬度都使用同一相成像系统进行测量,这为细胞流变特性的无标记、非接触、单次成像提供了一种独特的替代方法。为了证明该技术的潜在适用性,我们测量了五个具有不同机械特性的细胞群体的相无序强度和剪切硬度,并证明了这两个参数之间存在反比关系。这种关系的存在表明,通过使用这种据我们所知新颖的非接触技术检查细胞结构的无序强度,可以获得细胞机械特性的预测结果。