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Updated: Feb 11, 2026

Fluorescent in situ Hybridization on Mitotic Chromosomes of Mosquitoes
Published on: September 17, 2012
Chromosome analysis of human refrozen embryos following fluorescence in situ hybridization
Eiko Otsu1,2, Akiko Sato1, Takafumi Utsunomiya1
1St. Luke Clinic 5-kumi, Tomioka, Tsumori 870-0945 Oita Japan.
Purpose:
Several recent reports have discussed refrozen and thawed embryo transfer; however, the process may cause a degree of chromosomal damage and subtle genomic mutation. In view of this possibility, the purpose of this study was to investigate the incidence of aneuploidy in refrozen embryos.
Methods:
In order to investigate the incidence of aneuploidy and mosaicism observed in chromosome 1, fluorescent in situ hybridization (FISH) was used on surviving embryos that first underwent one freeze-thaw cycle, then were allowed to develop to the blastocyst stage, and subsequently survived a second freeze-thaw cycle.
Results:
Of 1,132 blastomeric nuclei analyzed from 15 refrozen embryos, disomy was found in 82.9%. In contrast, for the 11 blastocysts subjected to only one freeze-thaw cycle, disomy was noted in 78.4%. Of the 197 blastomeric nuclei analyzed in all arrested embryos, disomy was found in 51.8%.
Conclusions:
The refreezing process did not increase aneuploidy. The good and fair morphology groups demonstrated a higher percentage of disomy than the poor morphology group regardless of whether they were frozen once or twice.
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