Cell cycle analysis in flow cytometry is based on the incorporation of labelled precursors in DNA. The use of BrdU versus SSC, in which side scatter substitutes PI fluorescence, has proved to be useful also for the distinction between G2 and Mitotic cells. Mitoses often produce an SSC decrease due to the morphological changes that happen in the nucleus during this phase of cell cycle. Moreover, DNA accessibility to PI varies during mitosis, as well. However, most of these variations, detectable by flow cytometry appear to be basically dependent on the cell line used
The cell cycle of the fission yeast, Schizosaccharomyces pombe, does not easily lend itself to analy...
Cellular DNA content can be measured by flow cytometry with the aim of : (1) revealing cell distribu...
Cellular DNA content can be measured by flow cytometry with the aim of : (1) revealing cell distribu...
Mitotic cells could be well discriminated from the cells in the G1-, S- and G2-phases of the cell cy...
Several subcompartments of the cell cycle in addition to the G1-, S-, and G2-phases usually observed...
Dynamic cell cycle analysis is based on the incorporation of labelled precursors into DNA. Although ...
<p>Analysis of Cell Cycle was based on DNA content by Propidium Iodide staining assessed by flow cyt...
Dynamic cell cycle analysis is based on the incorporation of labelled precursors into DNA. Although ...
Dynamic cell cycle analysis is based on the incorporation of labelled precursors into DNA. Althoug...
An optimal technology for cell cycle analysis would allow the concomitant measurement of apoptosis, ...
An optimal technology for cell cycle analysis would allow the concomitant measurement of apoptosis, ...
<p>(A) Wild-type and (B) <i>rad5</i>∆ cells are compared following treatment with CP (80 μM), NSC109...
The cell cycle of the fission yeast, Schizosaccharomyces pombe, does not easily lend itself to analy...
Cellular DNA content can be measured by flow cytometry with the aim of : (1) revealing cell distribu...
Cellular DNA content can be measured by flow cytometry with the aim of : (1) revealing cell distribu...
The cell cycle of the fission yeast, Schizosaccharomyces pombe, does not easily lend itself to analy...
Cellular DNA content can be measured by flow cytometry with the aim of : (1) revealing cell distribu...
Cellular DNA content can be measured by flow cytometry with the aim of : (1) revealing cell distribu...
Mitotic cells could be well discriminated from the cells in the G1-, S- and G2-phases of the cell cy...
Several subcompartments of the cell cycle in addition to the G1-, S-, and G2-phases usually observed...
Dynamic cell cycle analysis is based on the incorporation of labelled precursors into DNA. Although ...
<p>Analysis of Cell Cycle was based on DNA content by Propidium Iodide staining assessed by flow cyt...
Dynamic cell cycle analysis is based on the incorporation of labelled precursors into DNA. Although ...
Dynamic cell cycle analysis is based on the incorporation of labelled precursors into DNA. Althoug...
An optimal technology for cell cycle analysis would allow the concomitant measurement of apoptosis, ...
An optimal technology for cell cycle analysis would allow the concomitant measurement of apoptosis, ...
<p>(A) Wild-type and (B) <i>rad5</i>∆ cells are compared following treatment with CP (80 μM), NSC109...
The cell cycle of the fission yeast, Schizosaccharomyces pombe, does not easily lend itself to analy...
Cellular DNA content can be measured by flow cytometry with the aim of : (1) revealing cell distribu...
Cellular DNA content can be measured by flow cytometry with the aim of : (1) revealing cell distribu...
The cell cycle of the fission yeast, Schizosaccharomyces pombe, does not easily lend itself to analy...
Cellular DNA content can be measured by flow cytometry with the aim of : (1) revealing cell distribu...
Cellular DNA content can be measured by flow cytometry with the aim of : (1) revealing cell distribu...