Completed Pregnancy, Children & Inherited Conditions Genetics & Molecular Biology

Prenatal Assessment of Genomes and Exomes (PAGE)

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When an ultrasound scan during pregnancy reveals a structural problem in the baby, doctors currently check only for large chromosomal changes. This study will read the baby’s entire genetic code—down to individual DNA building blocks—to find the precise gene responsible for the abnormality. The problem is that standard prenatal testing misses many smaller genetic faults that can cause heart defects, brain malformations, or other structural problems. Without a genetic diagnosis, parents cannot know what to expect for their child’s health or whether the condition might recur in future pregnancies. Current methods also cannot keep pace with the vast amount of data generated by full genome sequencing. If this research succeeds, it will identify new genes that cause structural abnormalities, giving families a clear diagnosis after the baby is born. More importantly, it will lay the groundwork for developing rapid, real-time genetic testing during pregnancy—so that in the future, parents could receive a precise genetic answer while there is still time to make informed decisions about the pregnancy. The immediate impact is on medical diagnostics and genetic counselling, not on everyday life.

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Women have ultrasound scans of their baby in pregnancy to check for structural abnormalities (such as a heart defect). If a problem is found, women are offered prenatal testing to check for chromosomal abnormalities in the baby, such as Down’s syndrome. This helps to predict the outcome for the child. The chromosomes in our cells consist of strands of DNA which encode all the genes. Standard genetic testing detects large chromosomal changes that can be seen down a microscope. In some centres additional testing can detect smaller chromosomal changes. We plan to look in the greatest possible detail, down to the level of individual building blocks of DNA, to examine the genes. In this study, as the amount of information generated by this testing is vast and the interpretation time-consuming, we cannot give results during the pregnancy. If a genetic reason for the abnormal scan findings is found, this information would be given to parents after pregnancy. This could provide important information about the health of the child or implications for future pregnancies. This research will allow us to discover new genes responsible for causing abnormalities and, if appropriate, to develop methods for speedy feedback of important information during pregnancy in the future.

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Related Research

Grants with similar aims, by meaning.

Next Generation Prenatal Screening - Improving Detection, Diagnosis and Treatment of Genetic Disease
Fetal Exome sequencing Translating Ultrasound anomalies (FETUS)
Optimising EXome PREnatal Sequencing Services - EXPRESS
Parental views and experiences of prenatal exome sequencing: A sub-study of the Optimising EXome PREnatal Sequencing Services (EXPRESS) project
Parent views and experiences of prenatal exome sequencing: A sub-study of the optimising EXome PRenatal Sequencing Services (EXPRESS) project

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