PubMed Health⌕ Search

Biomedical subjects

Dong Gui Hu

Publications and source records attributed to Dong Gui Hu.

2 recordsLinked to original sources

Singleton births after routine preimplantation genetic diagnosis using exclusion testing (D4S43 and D4S126) for Huntington's disease.

OBJECTIVE: To develop exclusion testing protocols for Huntington's disease (HD) linkage markers suitable for use in a clinical preimplantation genetic diagnosis (PGD) setting for couples in whom a partner was at 50% risk of inheriting HD, but who choose not to undergo presymptomatic mutation testing. DESIGN: Preimplantation genetic diagnosis using exclusion testing. SETTING: In vitro fertilization clinic. PATIENT(S): Three couples with family histories of HD, two couples opposed to direct mutation testing. INTERVENTION(S): Development of single-cell polymerase chain reaction tests for PGD for the HD mutation and two HD gene-flanking markers (D4S43 and D4S126), allowing the identification of an individual embryo as being at either low or high risk for developing HD without being diagnostic of the presence of the mutation. MAIN OUTCOME MEASURE(S): D4S43, D4S126, and HD mutation. RESULT(S): After PGD for HD, couple 1 gave birth to a healthy girl after a frozen embryo transfer, and genetic status was confirmed by prenatal diagnosis to be very low risk for developing HD. Couple 2 gave birth to a healthy boy after their second cycle of PGD, and couple 3, after a third cycle, gave birth to a boy with congenital heart defects, which were successfully corrected with surgery at age 5 days. Both couples 2 and 3 declined prenatal testing, and therefore relinquished the opportunity to confirm the PGD. CONCLUSION(S): Preimplantation genetic diagnosis for HD using exclusion testing resulted in three live singleton births after six oocyte recovery procedures. The diagnostic protocol provided couples the opportunity to minimize the likelihood of disease transmission to their children, without the requirement for predictive testing.

Adult↗

Aneuploidy detection in single cells using DNA array-based comparative genomic hybridization.

The use of metaphase comparative genomic hybridization (CGH) to screen all human chromosomes for aneuploidy in preimplantation embryos is hindered by the time required to perform the analysis. We report in this paper a novel approach to manufacture a DNA microarray for CGH for the detection of aneuploidy in single cells. We spotted human chromosome-specific libraries on glass slides that were depleted of repetitive sequences and tested our array CGH method in 14 experiments using either single male and/or single female lymphocytes. For the autosomes, the mean normalized ratios were all close to the expected ratio of 1.0 with overall 300/308 (97%) of the normalized ratios falling within the range 0.75 to 1.25. It was possible to deduce the correct copy number of the X chromosome in 13/14 (92.9%) separate array CGH experiments but the Y chromosome in only 4/14 (29%). We tested our microarray CGH method on a single fibroblast from each of three cell lines containing a specific chromosome aneuploidy (trisomy 13, 15 or 18) and in each case our microarray analysis was able to obtain a diagnosis based on the fact that the aneuploid chromosome gave the highest ratio (1.32, 1.27 and 1.27 respectively) with the ratios of all other chromosomes falling within the range 0.75-1.25. Requiring just 30 h, our method may be more suitable for PGD aneuploidy screening than metaphase CGH.

Female↗