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Updated: Jun 5, 2025

FISH for Pre-implantation Genetic Diagnosis
Published on: February 23, 2011
Going Back in Time: Prenatal Presentations of Postnatal Genetic Diagnoses Made in a Neonatal Intensive Care Unit
Michael Duyzend1,2,3,4, Malika Sud1,2, Alissa M D'Gama1,2,5,6
1Maternal Fetal Care Center, Boston Children's Hospital, Boston, Massachusetts, USA.
Insights
Many rare genetic conditions lack clear prenatal signs, complicating early diagnosis. A broad approach to prenatal testing is recommended to improve outcomes for infants requiring neonatal intensive care unit (NICU) support.
Area of Science:
- Medical Genetics
- Neonatal Care
- Prenatal Diagnosis
Background:
- Prenatal genetic diagnosis is crucial for perinatal care.
- Incomplete knowledge of fetal rare-disease phenotypes complicates prenatal suspicion.
- Early genetic diagnosis can significantly impact infant care and outcomes.
Purpose of the Study:
- To characterize prenatal presentations of infants with rare genetic conditions diagnosed postnatally in a NICU.
- To evaluate reasons why prenatal genetic diagnosis was not achieved.
- To identify challenges in fetal phenotyping for rare genetic disorders.
Main Methods:
- Retrospective cohort study of infants (2017-2023) admitted to a Level IV NICU.
- Inclusion criteria: postnatal genetic diagnosis before 1 year of age.
- Analysis of infants imaged prenatally at a Maternal Fetal Care Center (MFCC).
Main Results:
- 51 infants met inclusion criteria; 9 had no strong prenatal suspicion for genetic syndrome.
- Many cases (42/51) did not pursue prenatal diagnostic testing, even if offered.
- Postnatal diagnoses utilized karyotype/FISH, microarray, gene panels, and exome sequencing.
Conclusions:
- Fetal phenotyping for rare genetic disorders presents significant challenges.
- A broad approach to prenatal testing is supported to enable earlier genetic diagnosis.
- Facilitating early genetic diagnosis can lead to meaningful improvements in postnatal care.
Objectives:
Prenatal genetic diagnosis can impact care across the perinatal continuum; however, prenatal suspicion for genetic disorders may be complicated by incomplete knowledge of fetal rare-disease phenotypes. Here, we describe the prenatal presentations of a cohort of infants with rare genetic conditions who were diagnosed postnatally in a neonatal intensive care unit (NICU), to characterize prenatal presenting features and evaluate why the diagnosis was not identified prenatally.
Methods:
Retrospective cohort study of infants born over a 7 year period (2017-2023) who were admitted to a Level IV NICU and received a postnatal genetic diagnosis prior to 1 year of age. We identified which of these infants had been imaged prenatally at our Maternal Fetal Care Center (MFCC) as an opportunity for prenatal genetic diagnosis. Clinical data were abstracted from the medical records.
Results:
51 cases met the inclusion criteria. Nine of the 51 infants were not strongly suspected to have a genetic syndrome prenatally when seen at the MFCC, as evidenced by lack of prenatal genetic consultation and lack of documented suspicion for a genetic etiology. These cases largely had absent or uncertain prenatal phenotypes. In most cases (42/51, 82.4%), prenatal diagnostic testing was not pursued even if offered. Overall, postnatal diagnoses, of which there was one dual diagnosis, were made by karyotype/FISH (11/52, 21.1%), microarray (8/52, 15.4%), gene panel/targeted testing (17/52, 32.7%), or exome sequencing (16/52, 30.8%).
Conclusions:
Our data illustrate the challenges in fetal phenotyping and support a broad approach to prenatal testing to facilitate early genetic diagnosis, which may meaningfully impact postnatal care.
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