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1.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 41(7): 844-848, 2024 Jul 10.
Article in Chinese | MEDLINE | ID: mdl-38946370

ABSTRACT

OBJECTIVE: To explore the clinical features and genetic basis for a fetus featuring Rhizomelic skeletal dysplasia. METHODS: A fetus diagnosed at the Reproductive and Genetic Center of Suzhou Municipal Hospital in November 2020 was selected as the study subject. Whole exome sequencing (WES) was carried out for the fetus and its parents. Candidate variants were verified by Sanger sequencing. Peripheral blood smears of both parents were also examined. RESULTS: The fetus was found to have a small chest and short limbs, which had suggested skeletal dysplasia. Genetic testing revealed that the fetus has harbored compound heterozygous variants of the LBR gene, including a paternally derived c.1687+1G>A and a maternally derived c.1757G>A (p.Arg586His). The blood smear of the father showed Pelger-Huet anomaly with hyposegmentation of neutrophil nuclei, while the neutrophils of the mother appeared to be normal. Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG) and the Association for Molecular Pathology (AMP), the c.1757G>A (p.Arg586His) variant was classified as likely pathogenic (PM3_Strong+PM2_Supporting+PP3), and so was the c.1687+1G>A variant (PVS1-Moderate+PM3+PM2-Supporting+PP4). CONCLUSION: The compound heterozygous variants of the LBR gene probably underlay the pathogenesis of skeletal dysplasia in this fetus.


Subject(s)
Exome Sequencing , Fetus , Humans , Female , Fetus/abnormalities , Pregnancy , Genetic Testing , Bone Diseases, Developmental/genetics , Prenatal Diagnosis , Male , Mutation , Adult , Heterozygote
2.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 41(7): 835-839, 2024 Jul 10.
Article in Chinese | MEDLINE | ID: mdl-38946368

ABSTRACT

OBJECTIVE: To explore the genetic basis for a fetus with nuchal cystic hygroma identified in the first trimester and cholecystomegaly identified in the middle trimester of pregnancy. METHODS: A 27-year-old pregnant woman who had presented at the Antenatal Diagnostic Center of Jinan Maternal and Child Health Care Hospital on October 25, 2018 was selected as the study subject. Chorionic villus sampling was carried out in the first trimester for chromosomal karyotyping and SNP-Array analysis. Amniocentesis was carried out in the second trimester, and peripheral blood of the couple was collected at the same time. Trio whole exome sequencing (WES) was carried out, and candidate variant was verified by Sanger sequencing and bioinformatic analysis. RESULTS: No abnormality was found by chromosomal karyotyping and SNP-Array, whilst high-throughput sequencing revealed that the fetus had harbored a heterozygous c.7732A>T (p.K2578X) nonsense variant of the NIPBL gene. Following elected abortion, the autopsy results were consistent with features of Cornelia de Lange syndrome (CdLS). The same variant was detected in neither parents and was unreported in the literature. Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG), it was classified as pathogenic (PVS1+PS2+PM2_Supporting+PP3). CONCLUSION: The novel nonsense variant of the NIPBL gene probably underlay the genetic etiology of CdLS in this fetus. Above finding has also enriched the mutational spectrum of the NIPBL gene.


Subject(s)
Cell Cycle Proteins , De Lange Syndrome , Prenatal Diagnosis , Humans , Female , Pregnancy , De Lange Syndrome/genetics , Adult , Prenatal Diagnosis/methods , Cell Cycle Proteins/genetics , Fetus/abnormalities , Exome Sequencing
3.
BMC Pregnancy Childbirth ; 24(1): 456, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38951757

ABSTRACT

BACKGROUND: TBX6, a member of the T-box gene family, encodes the transcription factor box 6 that is critical for somite segmentation in vertebrates. It is known that the compound heterozygosity of disruptive variants in trans with a common hypomorphic risk haplotype (T-C-A) in the TBX6 gene contribute to 10% of congenital scoliosis (CS) cases. The deletion of chromosome 17q12 is a rare cytogenetic abnormality, which often leads to renal cysts and diabetes mellitus. However, the affected individuals often exhibit clinical heterogeneity and incomplete penetrance. METHODS: We here present a Chinese fetus who was shown to have CS by ultrasound examination at 17 weeks of gestation. Trio whole-exome sequencing (WES) was performed to investigate the underlying genetic defects of the fetus. In vitro functional experiments, including western-blotting and luciferase transactivation assay, were performed to determine the pathogenicity of the novel variant of TBX6. RESULTS: WES revealed the fetus harbored a compound heterozygous variant of c.338_340del (p.Ile113del) and the common hypomorphic risk haplotype of the TBX6 gene. In vitro functional study showed the p.Ile113del variant had no impact on TBX6 expression, but almost led to complete loss of its transcriptional activity. In addition, we identified a 1.85 Mb deletion on 17q12 region in the fetus and the mother. Though there is currently no clinical phenotype associated with this copy number variation in the fetus, it can explain multiple renal cysts in the pregnant woman. CONCLUSIONS: This study is the first to report a Chinese fetus with a single amino acid deletion variant and a T-C-A haplotype of TBX6. The clinical heterogeneity of 17q12 microdeletion poses significant challenges for prenatal genetic counseling. Our results once again suggest the complexity of prenatal genetic diagnosis.


Subject(s)
Chromosomes, Human, Pair 17 , Haplotypes , Heterozygote , T-Box Domain Proteins , Humans , T-Box Domain Proteins/genetics , Female , Chromosomes, Human, Pair 17/genetics , Pregnancy , Adult , Chromosome Deletion , Exome Sequencing , Sequence Deletion , Fetus/abnormalities , Ultrasonography, Prenatal
4.
Rev Assoc Med Bras (1992) ; 70(5): e20231118, 2024.
Article in English | MEDLINE | ID: mdl-38775502

ABSTRACT

OBJECTIVE: The aim of this study was to examine the factors that influence pregnancy termination due to fetal anomalies, regardless of gestational age, within the legal framework of Turkey. METHODS: This retrospective study was conducted between January 2021 and July 2023 at a tertiary perinatology center to analyze patients undergoing pregnancy termination. The process involved multidisciplinary evaluations and informed consent, resulting in 326 pregnancy terminations, categorized by gestational timing. RESULTS: Of the 326 patients studied, 219 opted for terminations. Gestational week at diagnosis significantly influenced the decision to terminate, with fetal anomalies being the primary indication. Chromosomal abnormalities accounted for 15.9% of the cases, while structural anomalies and maternal disorders accounted for 84.1% and structural malformations accounted for 84.1% of the cases. Late terminations (≥23 weeks) accounted for 30% of cases and required complex procedures. CONCLUSION: The findings of this study indicate that maternal demographic factors have a limited impact on termination decisions. Early diagnosis of fetal anomalies is crucial for informed decision-making and emotional support, and the psychological consequences of late termination highlight the need for maternal support. Obstetricians play a vital role in facilitating early intervention. This study underscores the complex medical, ethical, and psychological aspects of pregnancy termination due to fetal anomalies. It emphasizes the importance of a holistic approach, considering medical, ethical, and psychological factors and the crucial role of healthcare professionals in supporting families during this challenging process.


Subject(s)
Abortion, Induced , Congenital Abnormalities , Decision Making , Gestational Age , Tertiary Care Centers , Humans , Female , Retrospective Studies , Pregnancy , Adult , Turkey/epidemiology , Abortion, Induced/statistics & numerical data , Young Adult , Adolescent , Fetus/abnormalities
5.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 41(6): 677-684, 2024 Jun 10.
Article in Chinese | MEDLINE | ID: mdl-38818551

ABSTRACT

Fetal structural anomalies and birth defects are primarily caused by genetic variants such as chromosomal number abnormalities, copy number variations (CNV), single nucleotide variants (SNV), and small insertions and deletions (indel). Whole-genome sequencing (WGS) based on next-generation sequencing (NGS) as an emerging technology for genetic disease diagnosis can detect the aforementioned types of variants. In recent years, high-depth WGS (> 30×) for prenatal diagnosis has also become available, and proved to be practical for unraveling the genetic etiology of fetal developmental abnormalities. To facilitate clinical practice, test development and preliminary implementation of WGS for diagnosing fetal structural anomalies, we have formulated a consensus over the application of WGS in prenatal diagnosis by compiling previously published consensuses, guidelines, and research findings to provide a guidance on data analysis, reporting recommendations, and consultation of prenatal WGS results.


Subject(s)
Prenatal Diagnosis , Whole Genome Sequencing , Humans , Whole Genome Sequencing/methods , Prenatal Diagnosis/methods , Female , Pregnancy , DNA Copy Number Variations , High-Throughput Nucleotide Sequencing/methods , Fetus/abnormalities , Chromosome Aberrations , Consensus
6.
J Hum Genet ; 69(7): 321-327, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38565611

ABSTRACT

Spondylocostal dysostosis (SCDO) encompasses a group of skeletal disorders characterized by multiple segmentation defects in the vertebrae and ribs. SCDO has a complex genetic etiology. This study aimed to analyze and identify pathogenic variants in a fetus with SCDO. Copy number variant sequencing and whole exome sequencing were performed on a Chinese fetus with SCDO, followed by bioinformatics analyses, in vitro functional assays and a systematic review on the reported SCDO cases with LFNG pathogenic variants. Ultrasound examinations in utero exhibited that the fetus had vertebral malformation, scoliosis and tethered cord, but rib malformation was not evident. We found a novel homozygous variant (c.1078 C > T, p.R360C) within the last exon of LFNG. The variant was predicted to cause loss of function of LFNG by in silico prediction tools, which was confirmed by an in vitro assay of LFNG enzyme activity. The systematic review listed a total of 20 variants of LFNG in SCDO. The mutational spectrum spans across all exons of LFNG except the last one. This study reported the first Chinese case of LFNG-related SCDO, revealing the prenatal phenotypes and expanding the mutational spectrum of the disorder.


Subject(s)
Exome Sequencing , Humans , Female , Fetus/abnormalities , Pregnancy , Abnormalities, Multiple/genetics , Abnormalities, Multiple/pathology , Mutation , Meningomyelocele/genetics , Meningomyelocele/diagnostic imaging , DNA Copy Number Variations , Asian People/genetics , East Asian People , Hernia, Diaphragmatic
7.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 41(5): 617-621, 2024 May 10.
Article in Chinese | MEDLINE | ID: mdl-38684312

ABSTRACT

OBJECTIVE: To explore the characteristics of a fetus with chromosome 1p36 deletion syndrome and 3p26.3p25.2 duplication. METHODS: A pregnant woman who had attended the Genetic Counseling Clinic of Linyi People's Hospital on February 22, 2022 and her fetus were selected as the study subjects. Clinical data were collected. Chromosomal karyotyping, fluorescence in situ hybridization (FISH) and chromosomal microarray analysis (CMA) were carried out for the prenatal diagnosis. RESULTS: Ultrasonography at 24th gestational week revealed that the fetus had ventricular septal defect, single umbilical artery, and slight widening of left lateral ventricle (12 mm). The woman was found to have a karyotype of 46,XX,t(1;3)(p36.22;p25.2), and the result of FISH was t(1;3)(3pter+,1qter+;1pter+,3qter+). The fetus was found to have a karyotype of 46,X?,add(1)(p36), and CMA confirmed that it has a 9.0 Mb deletion at 1p36.33p36.22 and a 12.6 Mb duplication at 3p26.3p25.2. Combining the maternal karyotype, the molecular karyotype of the fetus was determined as 46,X?,der(1)t(1;3)(p36.22;p25.2)mat.arr[hg19]1p36.33p36.22(849467_9882666)×1, 3p26.3p25.2(61892_12699607)×3, with the former known to be associated with 1p36 deletion syndrome. CONCLUSION: The fetus was diagnosed with 1p36 deletion syndrome, and its 1p36.33p36.22 deletion and 3p26.3p25.2 duplication had both derived from the balanced translocation carried by its mother.


Subject(s)
Chromosome Deletion , Chromosome Duplication , Chromosomes, Human, Pair 1 , Chromosomes, Human, Pair 3 , Karyotyping , Prenatal Diagnosis , Humans , Female , Chromosomes, Human, Pair 1/genetics , Pregnancy , Chromosomes, Human, Pair 3/genetics , Adult , Trisomy/genetics , Trisomy/diagnosis , Chromosome Disorders/genetics , Chromosome Disorders/embryology , Chromosome Disorders/diagnosis , In Situ Hybridization, Fluorescence , Fetus/abnormalities
8.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 41(5): 622-625, 2024 May 10.
Article in Chinese | MEDLINE | ID: mdl-38684313

ABSTRACT

OBJECTIVE: To carry out invasive prenatal diagnosis for a fetus with ultrasound-indicated agenesis of corpus callosum and explore its genetic etiology. METHODS: A pregnant woman presented at the Affiliated Hospital of Putian College on December 16, 2022 was selected as the study subject. Amniotic fluid and peripheral blood samples from the fetus and the couple were collected. Conventional G-banded chromosomal karyotyping was carried out, and whole-genome copy number variation analysis was performed using single nucleotide polymorphism microarray (SNP-array). RESULTS: The karyotypes of the fetus and the couple were normal by the G-banding analysis. SNP-array analysis of the amniotic fluid sample revealed a 4.5 Mb microdeletion in the 18q21.2q21.31 region of the fetus. SNP-array analysis of peripheral blood samples from the couple did not find any abnormality. CONCLUSION: Through G-banded chromosomal karyotyping and SNP-array analysis, a fetus with 18q21.2q21.31 microdeletion was identified, which has conformed to the diagnosis of Pitt-Hopkins syndrome. Above finding has provided a basis for genetic counseling for the couple.


Subject(s)
Chromosome Deletion , Chromosomes, Human, Pair 18 , Hyperventilation , Intellectual Disability , Karyotyping , Humans , Female , Pregnancy , Intellectual Disability/genetics , Chromosomes, Human, Pair 18/genetics , Adult , Hyperventilation/genetics , Polymorphism, Single Nucleotide , Prenatal Diagnosis , Fetus/abnormalities , Facies , Chromosome Banding , DNA Copy Number Variations
9.
Congenit Anom (Kyoto) ; 64(3): 70-90, 2024 May.
Article in English | MEDLINE | ID: mdl-38586935

ABSTRACT

This pictorial essay focuses on ultrasound (US) and magnetic resonance imaging (MRI) features of fetal urogenital anomalies. Fetal urogenital malformations account for 30%-50% of all anomalies discovered during pregnancy or at birth. They are usually detected by fetal ultrasound exams. However, when ultrasound data on their characteristics is insufficient, MRI is the best option for detecting other associated anomalies. The prognosis highly depends on their type and whether they are associated with other fetal abnormalities.


Subject(s)
Magnetic Resonance Imaging , Ultrasonography, Prenatal , Urogenital Abnormalities , Female , Humans , Pregnancy , Fetus/diagnostic imaging , Fetus/abnormalities , Magnetic Resonance Imaging/methods , Prenatal Diagnosis/methods , Urogenital Abnormalities/diagnostic imaging , Urogenital Abnormalities/diagnosis
10.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 41(5): 601-605, 2024 May 10.
Article in Chinese | MEDLINE | ID: mdl-38684309

ABSTRACT

OBJECTIVE: To explore the genetic etiology of a fetus with short limbs identified by prenatal ultrasonography. METHODS: A fetus detected with short limb malformations at Shengjing Hospital Affiliated to China Medical University on October 25, 2021 was selected as the study subject. Prenatal ultrasound and post-abortion imaging were carried out to determine the phenotypic characteristics of the fetus. Amniotic fluid sample of the fetus and peripheral blood samples of its parents were collected. Following extraction of genomic DNA, whole-exome sequencing was carried out. Candidate variants were verified by Sanger sequencing. Online software was used to predict the structural changes of the mutant proteins. RESULTS: Prenatal ultrasound showed that the fetus had a small bell-shaped thorax, markedly shortened limbs, flat midface, a small nose with anteriorly tilted nostrils, and a small mandible. Post-abortion CT showed typical short and wide fetal ribs, cupped metaphyses at both ends, short long bones with wide metaphyses, resulting in a dumbbell-shaped appearance and curved thoracic vertebrae. Whole-exome sequencing revealed that the fetus had harbored compound heterozygous variants of the COL11A1 gene, namely c.2251G>T and c.3790G>T, both of which were predicted to alter the important Gly-X-Y structure of collagen protein. Sanger sequencing confirmed that the variants were respectively inherited from its parents. CONCLUSION: A rare fetus with Fibrochondrogenesis type 1 due to compound heterozygous variants of the COL11A1 gene has been diagnosed. Above finding has enabled genetic counseling and reproductive guidance for this family.


Subject(s)
Collagen Type XI , Fetus , Heterozygote , Phenotype , Ultrasonography, Prenatal , Humans , Female , Pregnancy , Collagen Type XI/genetics , Fetus/abnormalities , Exome Sequencing , Adult , Mutation , Prenatal Diagnosis , Genetic Testing
11.
Zhonghua Yi Xue Yi Chuan Xue Za Zhi ; 41(5): 606-611, 2024 May 10.
Article in Chinese | MEDLINE | ID: mdl-38684310

ABSTRACT

OBJECTIVE: To explore the genetic etiology of a fetus with cryptophthalmos detected by prenatal ultrasonography. METHODS: A fetus undergoing induced labor at 32nd gestational week due to absence of bilateral eye fissures detected by prenatal ultrasonography in January 2017 was selected as the study subject. Umbilical cord blood sample from the fetus and peripheral blood samples from its parents were collected for the extraction of genomic DNA. Pathogenic variants were screened through whole exome sequencing (WES) and verified by Sanger sequencing. Pathogenicity of candidate variants was verified by bioinformatic analysis and protein structure simulation. Based on the results of genetic testing, prenatal diagnosis was provided to the couple upon their subsequent pregnancy. RESULTS: The couple had four adverse pregnancies previously. The aborted fetus was the fifth, with fused bilateral upper and lower eyelids, poorly developed eyeballs, adhesion of the cornea with the upper eyelid, low-set ears, and abnormal plantar creases, and was diagnosed with cryptophthalmos. WES and Sanger sequencing revealed that the fetus has harbored compound heterozygous variants of the FREM2 gene, namely c.4537G>A (p.D1513N) and c.7292C>T (p.T2431M). Both variants were unreported associated with cryptophthalmos previously. Protein structure simulation showed that they may lead to loss of hydrogen bonds in the protein product. Based on the guidelines from the American College of Medical Genetics and Genomics (ACMG), both variants were predicted to be likely pathogenic (PM1_Supporting+PM2_Supporting+PM5+PP3+PP4; PM2_Supporting+PM3+PP3+PP4). The mother was performed prenatal diagnosis in her sixth pregnancy based on the variants detected in this family, and delivered a daughter with normal phenotype. CONCLUSION: The FREM2: c.4537G>A and c.7292C>T compound heterozygous variants probably underlay the pathogenesis of cryptophthalmos in this fetus. Above finding has enriched the mutational spectrum of the FREM2 gene.


Subject(s)
Fetus , Humans , Female , Pregnancy , Fetus/abnormalities , Exome Sequencing , Adult , Genetic Testing , Ultrasonography, Prenatal , Mutation , Prenatal Diagnosis , Eye Abnormalities/genetics
12.
Zhonghua Fu Chan Ke Za Zhi ; 59(4): 279-287, 2024 Apr 25.
Article in Chinese | MEDLINE | ID: mdl-38644274

ABSTRACT

Objective: To evaluate the diagnostic efficiency of copy number variation sequencing (CNV-seq) to detect the deletion or duplication of DMD gene in prenatal diagnosis. Methods: A retrospective analysis was carried out on the CNV-seq results of 34 544 fetuses diagnosed in the First People's Hospital of Yunnan Province from January 2018 to July 2023. A total of 156 cases of fetuses were collected, including Group 1:125 cases with family history of Duchenne muscular dystrophy or Becker muscular dystrophy (DMD/BMD), and Group 2:31 cases with no family history but a DMD gene deletion or duplication was detected unexpectedly by CNV-seq. Multiplex ligation-dependent probe amplification (MLPA) was used as a standard method to detect the deletion or duplication. Consistency test was carried out basing on the results of CNV-seq and MLPA of all 156 cases. Results: Comparing to MLPA, CNV-seq had a coincidence rate of 92.3% (144/156) for DMD gene deletion or duplication, with a sensitivity and positive predictive value of 88.2%, with a specificity and negative predictive value of 94.3%, a missed detection rate of 3.8%, and a Kappa value of 0.839. CNV-seq missed 4 cases with deletions and 2 with duplications due to involved fragments less than 100 Kb, among 20 cases of deletions and 6 cases of duplications detected by MLPA in Group 1. In Group 2, the deletions and duplications detected by CNV-seq were 42% (13/31) and 58% (18/31), respectively, in which the percentage of duplication was higher than that in Group 1. Among those 18 cases with duplications, 3 cases with duplication locating in exon 42~67 were likely pathogenic; while 9 cases with duplication covering the 5' or 3' end of the DMD gene, containing exon 1 or 79 and with only one breakpoint within the gene, along with the last 6 cases with duplications locating at chrX: 32650635_32910000 detected only by CNV-seq, which might be judged as variants of uncertain significance. Conclusions: CNV-seq has a good efficiency to detect fetal DMD gene deletion or duplication in prenatal diagnosis, while a further verification test by MLPA is recommended. The duplications on chrX: 32650635_32910000, 5' or 3' end of DMD gene detected by CNV-seq should be carefully verified and assessed because those variants appear to be nonpathogenic polymorphisms.


Subject(s)
DNA Copy Number Variations , Gene Deletion , Gene Duplication , Muscular Dystrophy, Duchenne , Prenatal Diagnosis , Humans , Prenatal Diagnosis/methods , Pregnancy , Female , Muscular Dystrophy, Duchenne/genetics , Muscular Dystrophy, Duchenne/diagnosis , Retrospective Studies , Sensitivity and Specificity , Dystrophin/genetics , Fetus/abnormalities , Multiplex Polymerase Chain Reaction/methods
13.
BMC Pregnancy Childbirth ; 24(1): 193, 2024 Mar 12.
Article in English | MEDLINE | ID: mdl-38475732

ABSTRACT

BACKGROUND: Single umbilical artery (SUA) is strongly associated with foetal structural abnormalities; however, the exact pattern of this association has not been described. We aimed to investigate the occurrence of malformations in singleton pregnancies with SUA in China and to study the association between the absent side of the umbilical artery and foetal malformations. METHODS: This was a retrospective study of singleton pregnancies for which routine first-trimester anatomical screening was performed at 11+ 0-13+ 6 gestational weeks and, if the pregnancy continued, a second-trimester scan was performed at 20+ 0-24+ 0 weeks. Data were extracted from records at the referral centre, the Obstetrics and Gynecology Hospital of Fudan University, between January 2011 and April 2019 (n = 47,894). Using logistic regression, the odds ratios (OR) with 95% confidence intervals (CIs) were calculated for malformations associated with SUA. RESULTS: The incidence of SUA in our study was 2.0% (970/47,894). Of all foetuses with SUA, 387 (39.9%) had structural malformations. The malformation type varied, with cardiovascular complications being the most common. A robust association was observed between SUA and oesophageal stenosis or atresia (OR: 25.33), followed by cardiovascular (OR: 9.98-24.02), scoliosis (OR: 18.62), genitourinary (OR: 2.45-15.66), and brain malformations (OR: 4.73-9.12). The absence of the left umbilical artery (n = 445, 45.9%) was consistent with that of the right umbilical artery (n = 431, 44.4%). Furthermore, a significantly higher rate of an absent right than the left umbilical artery (p<0.01) was observed in SUA with foetal abnormalities than in SUA with no malformations. CONCLUSIONS: Overall, we observed a higher risk of various specific malformations in foetuses with SUA, and a strong association between SUA and oesophageal stenosis or atresia. The absence of the right umbilical artery was most common in foetuses with SUA and structural malformations. This study provides a reference for ultrasonographers in conducting foetal structural screening for pregnant women with SUA.


Subject(s)
Esophageal Stenosis , Single Umbilical Artery , Pregnancy , Female , Humans , Single Umbilical Artery/epidemiology , Retrospective Studies , Ultrasonography, Prenatal , Umbilical Arteries/diagnostic imaging , Fetus/abnormalities
14.
Eur J Hum Genet ; 32(7): 759-769, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38486024

ABSTRACT

Prenatal Exome (pES) or Genome (pGS) Sequencing analysis showed a significant incremental diagnostic yield over karyotype and chromosomal microarray analysis (CMA) in fetal structural anomalies. Optimized indications and detection rates in different fetal anomalies are still under investigation. The aim of this study was to assess the incremental diagnostic yield in prenatally diagnosed Central Nervous System (CNS) anomalies. A systematic review on antenatal CNS anomalies was performed according to PRISMA guidelines, including n = 12 paper, accounting for 428 fetuses. Results were pooled in a meta-analysis fitting a logistic random mixed-effect model. The effect of interest was the incremental diagnostic rate of pES over karyotype/CMA in detecting likely pathogenic/pathogenic Single Nucleotide Variants (SNVs). A further meta-analysis adding the available pGS studies (including diagnostic coding SNVs only) and submeta-analysis on three CNS subcategories were also performed. The pooled incremental diagnostic yield estimate of pES studies was 38% (95% C.I.: [29%;47%]) and 36% (95% C.I.: [28%;45%]) when including diagnostic SNVs of pGS studies. The point estimate of the effect resulted 22% (95% C.I.: [15%;31%]) in apparently isolated anomalies, 33% (95% C.I.: [22%;46%]) in CNS-only related anomalies (≥1) and 46% (95% C.I.: [38%;55%]) in non-isolated anomalies (either ≥ 2 anomalies in CNS, or CNS and extra-CNS). Meta-analysis showed a substantial diagnostic improvement in performing Prenatal Genome-Wide Sequencing analysis (Exome or Genome) over karyotype and CMA in CNS anomalies.


Subject(s)
Polymorphism, Single Nucleotide , Prenatal Diagnosis , Humans , Prenatal Diagnosis/methods , Female , Nervous System Malformations/genetics , Nervous System Malformations/diagnosis , Pregnancy , Exome Sequencing/methods , Exome Sequencing/standards , Whole Genome Sequencing/methods , Whole Genome Sequencing/standards , Central Nervous System/abnormalities , Central Nervous System/pathology , Genetic Testing/methods , Genetic Testing/standards , Exome , Fetus/abnormalities
15.
Birth Defects Res ; 116(2): e2317, 2024 Feb.
Article in English | MEDLINE | ID: mdl-38362599

ABSTRACT

BACKGROUND: The condition of monozygotic, monochorionic triplet fetuses with a pair of conjoined twins is extremely rare (close to one in a million births), presents challenges in its management, and with poor prognosis. CASE REPORT: We report a case of monochorionic diamniotic triplet pregnancy, ultrasound at 14 weeks shows a pair of conjoined thoracopagus fetuses, sharing heart, liver, and umbilical cord, in addition to omphalocele. The third fetus, without malformations, presents signs of early heart failure compatible with twin-to-twin transfusion syndrome. It was decided to carry out expectant management where at 18 weeks, intrauterine death of the three fetuses occurs. An abortion is performed by hysterotomy. CONCLUSIONS: The treatment in these cases is discussed, three management options have been proposed: expectant management, selective reduction of the conjoined fetuses, or termination of the pregnancy. A review of the literature found only 12 cases with this combination of pathologies, in which only 3 normal fetuses (25%) survived and none of the conjoined twins survived. To our knowledge, this case is the first of a monochorionic triplet pregnancy with conjoined fetuses complicated with early twin-to-twin transfusion.


Subject(s)
Fetofetal Transfusion , Pregnancy, Triplet , Twins, Conjoined , Female , Pregnancy , Humans , Fetofetal Transfusion/complications , Fetal Death/etiology , Fetus/abnormalities
16.
Indian J Pathol Microbiol ; 67(2): 289-296, 2024 Apr 01.
Article in English | MEDLINE | ID: mdl-38394395

ABSTRACT

OBJECTIVES AND BACKGROUND: According to studies, 1% of all pregnancies have an abnormality, with 20-30% of those affecting the genitourinary system. Congenital abnormalities of the kidney and urinary tract (CAKUT) is one of the primary causes of perinatal and neonatal mortality in children. Many extra-renal congenital illnesses accompany these defects, affecting the patient's prognosis. This study aims to determine the subtypes, frequency, and extra-renal defects associated with congenital anomalies of the urinary system, which is the major cause of mortality in fetal and infant autopsies throughout the perinatal and neonatal eras. We believe that our study will contribute to the literature because few autopsy investigations can give this data. MATERIALS AND METHODS: The study included 110 fetal autopsies between January 1997 and May 2019. 10% were newborns under the age of one year, and 90% were fetus autopsies. RESULTS: Males accounted for 67.3% of the cases, while females accounted for 35 (31.8%) (the gender of one case could not be determined). Renal dysplasia was the most frequent CAKUT, with a rate of 22.73%, followed by renal agenesis, with a rate of 20.0%. Eighty-four cases (76.3%) showed disease in at least one other organ system. Musculoskeletal system (MSS) abnormalities were the most common associated system anomaly, with one or more MSS anomalies (34.55%) detected in 38 cases. CONCLUSION: Finally, we want to underline that CAKUT and its associated anomalies are not uncommon. Prenatal imaging, genetic investigation, and/or postmortem examination should all be used to screen for CAKUT. This information is helpful for the mother's future pregnancy management and parental genetic counseling.


Subject(s)
Autopsy , Fetus , Kidney , Urinary Tract , Urogenital Abnormalities , Humans , Female , Male , Fetus/abnormalities , Fetus/pathology , Infant, Newborn , Kidney/pathology , Kidney/abnormalities , Urogenital Abnormalities/pathology , Urogenital Abnormalities/epidemiology , Urinary Tract/abnormalities , Urinary Tract/pathology , Pregnancy , Infant , Retrospective Studies , Vesico-Ureteral Reflux
17.
Clin Dysmorphol ; 33(3): 137-144, 2024 Jul 01.
Article in English | MEDLINE | ID: mdl-38410977

ABSTRACT

OBJECTIVE: Fetuses with abnormal karyotypes often exhibit distinctive ultrasonographic markers, including major anomalies and "soft" markers, indicating potential chromosomal issues. A crucial consideration arises when a single fetal anomaly is detected, raising the question of whether karyotyping is warranted, given the associated procedural risks. Our objective was to establish correlations between single fetal anomalies identified through ultrasound and chromosomal abnormalities. METHODS: A cross-sectional study analyzed the karyotype of 1493 fetuses and detected a single ultrasonographic anomaly over a 16-year period. Karyotyping was performed using the standard karyotype technique. Moreover, data regarding the type of anomaly detected ultrasonographically, karyotype results, and outcomes following interventions were collected. Among other methods, the use of positive likelihood ratios (LR+) was used to evaluate the diagnostic accuracy of ultrasound compared to karyotyping. RESULTS: In total, an aberrant karyotype was identified in 99 fetuses (6.6%). This was most commonly observed in cases involving a "soft" marker, occurring in 27 out of 218 fetuses (12.4%). The most frequently detected aberrant karyotype resulted from aneuploidies (80.6% of cases), notably trisomy 21 (50.5%). "Soft" markers predicted chromosomal issues (LR+ = 1.9; OR = 2.4), and isolated polyhydramnios (LR+ = 1.54; OR = 1.6) showed significance in predicting fetal chromosomal aberrations. CONCLUSION: When assessing the necessity for karyotyping in fetuses with single major anomalies or "soft" markers, it is crucial to consider individual risks for chromosomopathies, including the LR+ of the detected marker. In cases where fetuses exhibit isolated anomalies with a normal karyotype, additional diagnostic measures, such as molecular cytogenetic and molecular genetics techniques, may become necessary.


Subject(s)
Abnormal Karyotype , Fetus , Karyotyping , Ultrasonography, Prenatal , Humans , Female , Pregnancy , Ultrasonography, Prenatal/methods , Karyotyping/methods , Cross-Sectional Studies , Fetus/abnormalities , Fetus/diagnostic imaging , Adult , Chromosome Aberrations
18.
Prenat Diagn ; 44(2): 222-236, 2024 02.
Article in English | MEDLINE | ID: mdl-38279830

ABSTRACT

Isolated bilateral hyperechoic kidneys (HEK) on prenatal ultrasound presents diagnostic, prognostic, and counseling challenges. Prognosis ranges from normal outcome to lethal postnatally. Presence/absence of extra-renal malformations, gestational age at presentation, amniotic fluid volume, and renal size may distinguish underlying etiologies and thereby prognosis, as prognosis is highly dependent upon underlying etiology. An underlying genetic diagnosis, clearly impactful, is determined in only 55%-60% of cases. We conducted a literature review of chromosomal (aneuploidies, copy number variants [CNVs]) single genes and other etiologies of fetal bilateral HEK, summarized how this information informs prognosis and recurrence risk, and critically assessed laboratory testing strategies. The most commonly identified etiologies are autosomal recessive and autosomal dominant polycystic kidney disease and microdeletions at 17q12 involving HNF1b. With rapid gene discovery, alongside advances in prenatal imaging and fetal phenotyping, the growing list of single gene diagnoses includes ciliopathies, overgrowth syndromes, and renal tubular dysgenesis. At present, microarray and gene panels or whole exome sequencing (WES) are first line tests employed for diagnostic evaluation. Whole genome sequencing (WGS), with the ability to detect both single nucleotide variants (SNVs) and CNVs, would be expected to provide the highest diagnostic yield.


Subject(s)
Genetic Testing , Kidney Diseases , Pregnancy , Female , Humans , Fetus/diagnostic imaging , Fetus/abnormalities , Prenatal Care , Kidney/diagnostic imaging , Prenatal Diagnosis
19.
Sci Rep ; 14(1): 2271, 2024 01 27.
Article in English | MEDLINE | ID: mdl-38280885

ABSTRACT

Few existing reports have investigated the copy number variants (CNVs) in fetuses with central nervous system (CNS) anomalies. To gain further insights into the genotype-phenotype relationship, we conducted chromosomal microarray analysis (CMA) to reveal the pathogenic CNVs (pCNVs) that were associated with fetal CNS anomalies. We enrolled 5,460 pregnant women with different high-risk factors who had undergone CMA. Among them, 57 subjects with fetal CNS anomalies were recruited. Of the subjects with fetal CNS anomalies, 23 were given amniocentesis, which involved karyotype analysis and CMA to detect chromosomal abnormalities. The other 34 cases only underwent CMA detection using fetal abortive tissue. In this study, we identified five cases of chromosome aneuploid and nine cases of pCNVs in the fetuses, with a chromosomal aberration detection rate of 24.56% (14/57). In the 23 cases that were given both karyotype and CMA analysis, one case with trisomy 18 was detected by karyotyping. Moreover, CMA revealed a further three cases of pCNVs, including the 1p36.33p36.31, 7q11.23, and 1q21.1q21.2 microdeletions, with a 13.04% (3/23) increase in CMA yield over the karyotype analysis. Additionally, three cases of trisomy 13, one case of trisomy 21, and six cases of pCNVs were detected in the other 34 fetuses where only CMA was performed. Furthermore, a higher chromosomal aberration detection rate was observed in the extra CNS anomaly group than in the isolated CNS anomaly group (40.91% vs 14.29%). In conclude, several pathogenic CNVs were identified in the fetuses with CNS anomalies using CMA. Among the detected CNVs, ZIC2, GNB1, and NSUN5 may be the candidate genes that responsible for fetal CNS anomalies. Our findings provides an additional reference for genetic counseling regarding fetal CNS anomalies and offers further insight into the genotype-phenotype relationship.


Subject(s)
Central Nervous System Diseases , Nervous System Malformations , Pregnancy , Female , Humans , Retrospective Studies , Prenatal Diagnosis , Chromosome Aberrations , Karyotyping , Microarray Analysis , Fetus/abnormalities , Karyotype , DNA Copy Number Variations/genetics
20.
Mol Genet Genomic Med ; 12(1): e2358, 2024 Jan.
Article in English | MEDLINE | ID: mdl-38284444

ABSTRACT

BACKGROUND: Mega-corpus-callosum syndrome with cerebellar hypoplasia and cortical malformations is a rare neurological disorder that is associated with typical clinical and imaging features. The syndrome is caused by pathogenic variants in the MAST1 gene, which encodes a microtubule-associated protein that is predominantly expressed in postmitotic neurons in the developing nervous system. METHODS: Fetal DNA from umbilical cord blood samples and genomic DNA from peripheral blood lymphocytes were subjected to whole-exome sequencing. The potential causative variants were verified by Sanger sequencing. RESULTS: A 26-year-old primigravid woman was referred to our prenatal center at 25 weeks of gestation due to abnormal ultrasound findings in the brain of the fetus. The brain abnormalities included wide cavum septum pellucidum, shallow and incomplete bilateral lateral fissure cistern, bilateral dilated lateral ventricles, hyperplastic corpus callosum, lissencephaly, and cortical dysplasia. No obvious abnormalities were observed in the brainstem or cerebellum hemispheres, but the cerebellum vermis was small. Whole-exome sequencing identified a de novo, heterozygous missense variant, c.695T>C(p.Leu232Pro), in the MAST1 gene and a genetic diagnosis of mega-corpus-callosum syndrome was considered. CONCLUSION: This study is the first prenatal case of MAST1-related disorder reported in the Chinese population and has expanded the mutation spectrum of the MAST1 gene.


Subject(s)
Cerebellar Vermis , Leukoencephalopathies , Malformations of Cortical Development , Nervous System Malformations , Pregnancy , Female , Humans , Adult , Cerebellar Vermis/diagnostic imaging , Cerebellum/diagnostic imaging , Cerebellum/abnormalities , Malformations of Cortical Development/genetics , Fetus/abnormalities , DNA , Developmental Disabilities
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