Phase correlation imaging of unlabeled cell dynamics

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作者
Lihong Ma
Gannavarpu Rajshekhar
Ru Wang
Basanta Bhaduri
Shamira Sridharan
Mustafa Mir
Arindam Chakraborty
Rajashekar Iyer
Supriya Prasanth
Larry Millet
Martha U. Gillette
Gabriel Popescu
机构
[1] Quantitative Light Imaging Laboratory,Department of Electrical and Computer Engineering
[2] Beckman Institute for Advanced Science and Technology,Department of Cell and Developmental Biology
[3] University of Illinois at Urbana-Champaign,Biosciences Division
[4] Institute of Information Optics,Department of Cell and Developmental Biology
[5] Zhejiang Normal University,undefined
[6] Jinhua,undefined
[7] University of Illinois at Urbana-Champaign,undefined
[8] Biological and Nanoscale Systems Group,undefined
[9] Oak Ridge National Laboratory,undefined
[10] Neuroscience Program,undefined
[11] University of Illinois at Urbana-Champaign IL 61801,undefined
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摘要
We present phase correlation imaging (PCI) as a novel approach to study cell dynamics in a spatially-resolved manner. PCI relies on quantitative phase imaging time-lapse data and, as such, functions in label-free mode, without the limitations associated with exogenous markers. The correlation time map outputted in PCI informs on the dynamics of the intracellular mass transport. Specifically, we show that PCI can extract quantitatively the diffusion coefficient map associated with live cells, as well as standard Brownian particles. Due to its high sensitivity to mass transport, PCI can be applied to studying the integrity of actin polymerization dynamics. Our results indicate that the cyto-D treatment blocking the actin polymerization has a dominant effect at the large spatial scales, in the region surrounding the cell. We found that PCI can distinguish between senescent and quiescent cells, which is extremely difficult without using specific markers currently. We anticipate that PCI will be used alongside established, fluorescence-based techniques to enable valuable new studies of cell function.
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