Microfluidic Cell Cycle Analysis of Spread Cells by DAPI Staining

Single-cell cell cycle analysis is an emerging technique that requires detailed exploration of the image analysis process. In this study, we established a microfluidic single-cell cell cycle analysis method that can analyze cells in small numbers and in situ on a microfluidic chip. In addition, fact...

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Main Authors: Jing Sun, Jiayu Zhang, Haibo Yang, Gongzhuo Wang, Yanzhao Li, Xuxin Zhang, Qidan Chen, Ming-Fei Lang
Format: Article
Language:English
Published: MDPI AG 2017-01-01
Series:Micromachines
Subjects:
Online Access:http://www.mdpi.com/2072-666X/8/2/36
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spelling doaj-4affbb32b6874545bca2f5a8f383e8602020-11-25T00:37:37ZengMDPI AGMicromachines2072-666X2017-01-01823610.3390/mi8020036mi8020036Microfluidic Cell Cycle Analysis of Spread Cells by DAPI StainingJing Sun0Jiayu Zhang1Haibo Yang2Gongzhuo Wang3Yanzhao Li4Xuxin Zhang5Qidan Chen6Ming-Fei Lang7College of Environmental and Chemical Engineering, Institute of Microanalysis, Dalian University, Dalian 116622, ChinaSchool of Life Science and Biotechnology, Dalian University, Dalian 116622, ChinaCollege of Environmental and Chemical Engineering, Institute of Microanalysis, Dalian University, Dalian 116622, ChinaCollege of Environmental and Chemical Engineering, Institute of Microanalysis, Dalian University, Dalian 116622, ChinaAffiliated Zhongshan Hospital of Dalian University, Dalian 116622, ChinaAffiliated Zhongshan Hospital of Dalian University, Dalian 116622, ChinaDepartment of Chemistry and Pharmacy, Zhuhai College of Jilin University, Zhuhai 519041, ChinaMedical College, Institute of Microanalysis, Dalian University, Dalian 116622, ChinaSingle-cell cell cycle analysis is an emerging technique that requires detailed exploration of the image analysis process. In this study, we established a microfluidic single-cell cell cycle analysis method that can analyze cells in small numbers and in situ on a microfluidic chip. In addition, factors that influenced the analysis were carefully investigated. U87 or HeLa cells were seeded and attached to microfluidic channels before measurement. Cell nucleic DNA was imaged by 4′-6-diamidino-2-phenylindole (DAPI) staining under a fluorescent microscope and subsequently fluorescent intensities of the cell nuclei DNA were converted to depict histograms for cell cycle phases. DAPI concentration, microscopic magnification, exposure time and cell number were examined for optimal cell cycle analysis conditions. The results showed that as few as a few hundred cells could be measured by DAPI staining in the range of 0.4–0.6 μg/mL to depict histograms with typical cell cycle phase distribution. Microscopic magnification during image acquisition, however, could distort the phase distribution. Exposure time did not significantly affect the cell cycle analysis. Furthermore, cell cycle inhibitor rapamycin treatment changed the cell cycle phase distribution as expected. In conclusion, a method for microfluidic single-cell cell cycle analysis of spread cells in situ was developed. Factors such as dye concentration and microscopic magnification had more influence on cell cycle phase distribution. Further studies will focus on detail differentiation of cell cycle phases and the application of such a method for biological meanings.http://www.mdpi.com/2072-666X/8/2/36microfluidicscell cyclespread cellDNA content
collection DOAJ
language English
format Article
sources DOAJ
author Jing Sun
Jiayu Zhang
Haibo Yang
Gongzhuo Wang
Yanzhao Li
Xuxin Zhang
Qidan Chen
Ming-Fei Lang
spellingShingle Jing Sun
Jiayu Zhang
Haibo Yang
Gongzhuo Wang
Yanzhao Li
Xuxin Zhang
Qidan Chen
Ming-Fei Lang
Microfluidic Cell Cycle Analysis of Spread Cells by DAPI Staining
Micromachines
microfluidics
cell cycle
spread cell
DNA content
author_facet Jing Sun
Jiayu Zhang
Haibo Yang
Gongzhuo Wang
Yanzhao Li
Xuxin Zhang
Qidan Chen
Ming-Fei Lang
author_sort Jing Sun
title Microfluidic Cell Cycle Analysis of Spread Cells by DAPI Staining
title_short Microfluidic Cell Cycle Analysis of Spread Cells by DAPI Staining
title_full Microfluidic Cell Cycle Analysis of Spread Cells by DAPI Staining
title_fullStr Microfluidic Cell Cycle Analysis of Spread Cells by DAPI Staining
title_full_unstemmed Microfluidic Cell Cycle Analysis of Spread Cells by DAPI Staining
title_sort microfluidic cell cycle analysis of spread cells by dapi staining
publisher MDPI AG
series Micromachines
issn 2072-666X
publishDate 2017-01-01
description Single-cell cell cycle analysis is an emerging technique that requires detailed exploration of the image analysis process. In this study, we established a microfluidic single-cell cell cycle analysis method that can analyze cells in small numbers and in situ on a microfluidic chip. In addition, factors that influenced the analysis were carefully investigated. U87 or HeLa cells were seeded and attached to microfluidic channels before measurement. Cell nucleic DNA was imaged by 4′-6-diamidino-2-phenylindole (DAPI) staining under a fluorescent microscope and subsequently fluorescent intensities of the cell nuclei DNA were converted to depict histograms for cell cycle phases. DAPI concentration, microscopic magnification, exposure time and cell number were examined for optimal cell cycle analysis conditions. The results showed that as few as a few hundred cells could be measured by DAPI staining in the range of 0.4–0.6 μg/mL to depict histograms with typical cell cycle phase distribution. Microscopic magnification during image acquisition, however, could distort the phase distribution. Exposure time did not significantly affect the cell cycle analysis. Furthermore, cell cycle inhibitor rapamycin treatment changed the cell cycle phase distribution as expected. In conclusion, a method for microfluidic single-cell cell cycle analysis of spread cells in situ was developed. Factors such as dye concentration and microscopic magnification had more influence on cell cycle phase distribution. Further studies will focus on detail differentiation of cell cycle phases and the application of such a method for biological meanings.
topic microfluidics
cell cycle
spread cell
DNA content
url http://www.mdpi.com/2072-666X/8/2/36
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