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Published on: August 17, 2022
Prenatal diagnosis of a recombinant chromosome 7 resulting in trisomy 7q11.22 --> qter
M Tchirikov1, A Merinsky, M Strohner
1Department of Obstetrics and Fetal Medicine, University Medical Center Mainz, Mainz, Germany. tchirikov@uni-mainz.de
Insights
We present a stillborn male with a large duplication of chromosome 7q, a rare condition. This trisomy 7q syndrome can be suspected based on specific fetal anomalies, necessitating prenatal diagnosis.
Area of Science:
- Genetics
- Prenatal Diagnosis
- Human Embryology
Background:
- Prenatal diagnosis of trisomy 7 is challenging due to limited case reports.
- This study details a rare case of a stillborn male with extensive duplication of chromosome 7q.
Observation:
- Sonographic findings revealed significant fetal growth retardation, micrognathia, ventricular septal defect, aortic coarctation, bradyarrhythmia, pericardial effusion, bilateral hydronephrosis, infravesical obstruction, and cerebellar hypoplasia.
- Karyotype analysis identified a derivative chromosome 7 with a large duplication of the long arm (7q11.22 --> qter).
- Maternal pericentric inversion of chromosome 7 (inv(7)(p22q11.2)) was identified, suggesting the fetal anomaly arose from meiotic crossing-over.
Findings:
- Fluorescence in situ hybridization (FISH) and array comparative genomic hybridization (CGH) confirmed a recombinant chromosome 7 in the fetus.
- The fetus exhibited a loss of 1.9 Mb at 7pter --> p22.3 and a gain of 87.04 Mb at 7q11.22 --> qter.
- The condition represents a rare syndrome of near-complete trisomy 7q.
Implications:
- The rare syndrome of trisomy 7q may be suspected prenatally with findings of growth retardation, cerebellar hypoplasia, micrognathia, aortic coarctation, VSD, and hydronephrosis.
- Invasive prenatal diagnosis should be offered to parents with suspected trisomy 7q.
- This case expands the understanding of chromosomal abnormalities involving chromosome 7 and their phenotypic manifestations.
Abstract:
Prenatal diagnosis of trisomy 7 is complex due to only a few reported cases. We report here on a stillborn boy with very large duplication of 7q11.22 --> qter, encompassing almost the entire long arm of chromosome 7. Ultrasound, fetal and parental chromosome banding, fluorescence in situ hybridization (FISH), and array comparative genomic hybridization (CGH) analyses were performed. Sonographic findings included growth retardation, micrognathia, ventricular septal defect (VSD), aortic coarctation, bradyarrhythmia, pericardial effusion, bilateral hydronephrosis, infravesical obstruction, and cerebellar hypoplasia. Chromosome analysis after cordocentesis at 23 weeks of gestation revealed an abnormal male karyotype with 46 chromosomes and a derivative chromosome 7 with a very large duplication of the long arm, 46,XY,der(7)(qter --> q11.2::p22 --> qter). The mother was found to carry an apparently balanced pericentric inversion, 46,XX,inv(7)(p22q11.2). Thus, the recombinant chromosome 7 [rec(7)dup(7q)inv(7)(p22.3q11.22)mat] of the fetus must have arisen through meiotic crossing-over between the inverted chromosome and the normal chromosome 7 in the maternal germline. FISH and array CGH results confirmed the recombinant chromosome 7 in the fetus and indicated a loss of 1.9 Mb at chromosome 7pter --> p22.3 (pter to 1,948,072 bp), and a gain of 87.04 Mb at chromosome 7q11.22 --> qter (71,760,154 bp to qter). The rare syndrome of almost complete trisomy 7q may be suspected in cases of growth retardation, cerebellar hypoplasia, micrognathia, aortic coarctation and VSD and hydronephrosis. Invasive prenatal diagnosis must be offered to the parents.
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