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TRISOMY 8 MOSAICISM: CELL CYCLE KINETICS AND ...

TRISOMY 8 MOSAICISM: CELL CYCLE KINETICS AND ...

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DNA undergoing synthesis. Once a sample is subcultured, BrdU is added and will<br />

become incorporated into the genome of the replicating cells (Bonhoeffer 2000). This<br />

newly replicated cell will continue to undergo divisions until the cell culture growth is<br />

terminated. The BrdU is detected in the chromosomes by a fluorescent stain on<br />

metaphase spreads.<br />

Cell divisions are determined by the amount of BrdU incorporation among<br />

chromatids. Equal staining among chromatids represents one division (singly-substituted<br />

double stranded DNA). Two divisions are seen as half the chromatids stained pale<br />

(doubly substituted) and the other half stained dark. Three divisions are recognized by<br />

three-fourths of the chromatids stained pale and one-fourth stained dark. Cell cycle<br />

kinetics analysis allows for detection of growth rate differences between different tissues<br />

and in normal versus abnormal cells.<br />

Purpose<br />

The first purpose of the study is to determine the level of mosaicism among<br />

several embryonic and extra-embryonic tissues from a male patient. Once the<br />

percentages of normal and trisomy 8 cells are determined for each tissue statistical<br />

analysis will be performed. Since a selective growth advantage is known to occur for<br />

normal cells over trisomy 8 cells, the second purpose of the study is to investigate cell<br />

cycle kinetics for each tissue. Cell cycle kinetics will determine the growth rates of the<br />

tissues and statistical analysis performed to denote significant differences in division<br />

times between normal and trisomy 8 cells.<br />

7

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