1.Renal autotransplantation for the treatment of complex renal aneurysm in a child: A case report.
Lei YU ; Wenbo YANG ; Yufan YANG ; Qiang WANG
Journal of Peking University(Health Sciences) 2025;57(2):396-399
Renal autotransplantation (RA) offers significant technical advantages for the management of certain complex renal vascular diseases, such as complex renal aneurysms and renal artery malformations. This report describes a case of a 5-year-old child with a complex left renal artery aneurysm combined with multiple aneurysms. The child was admitted to Peking University People's Hospital in December 2023 due to a one-year history of intermittent abdominal pain, with an abdominal mass detected in the past month. Computed tomography angiography(CTA) revealed multiple vascular anomalies, including: (1) a left renal artery aneurysm, (2) an abdominal aortic aneurysm, and (3) a right iliac artery aneurysm. After a comprehensive evaluation of these findings, the surgical team developed a treatment plan that involved the excision of the left renal artery aneurysm, autotransplantation of the left kidney, and resection of the abdominal aortic aneurysm with an artificial vascular catheterization. During surgery, it was discovered that the left renal artery anatomy was highly complex. The artery had two primary branches, along with an additional polar artery located at the lower pole. The aneurysm was identified at the distal end of the renal artery trunk, with a pronounced bulging at the intersection between the main renal artery trunk and its secondary branches. Due to these structural complexities, the team decided to use an ex vivo surgical approach to repair the aneurysm. Ex vivo repair involves temporarily removing the kidney from the body to repair the renal artery aneurysm with enhanced precision, enabling the surgical team to meticulously reconstruct the complex vascular architecture without the constraints of in vivo manipulation. The ex vivo repair of the renal artery aneurysm was successful, allowing for accurate vascular reconstruction and avoiding potential intraoperative complications. Following the reconstruction, the kidney was autotransplanted back into the child's body, and blood flow was effectively restored to the organ. The therapeutic outcome was excellent, with the child experiencing no postoperative complications. The patient recovered well and was discharged from the hospital in stable condition. This case underscores the value of renal autotransplantation combined with ex vivo repair for pediatric patients with complicated renal artery aneurysms. Through this report, we aim to provide insights and considerations for the surgical treatment of similar cases in children with complex renal vascular anatomy.
Child, Preschool
;
Humans
;
Aneurysm/surgery*
;
Aortic Aneurysm, Abdominal/diagnostic imaging*
;
Computed Tomography Angiography
;
Iliac Aneurysm/surgery*
;
Kidney Transplantation/methods*
;
Renal Artery/abnormalities*
;
Transplantation, Autologous
2.Genetic analysis for a pedigree with Structural heart defects and renal anomalies syndrome caused by variants of TMEM260 gene.
Lulu YAN ; Jinghui ZOU ; Juan CAO ; Jinxiang ZHANG ; Yuxin ZHANG ; Chunxiao HAN ; Yingwen LIU ; Haibo LI
Chinese Journal of Medical Genetics 2025;42(4):460-468
OBJECTIVE:
To explore the genetic characteristics of a fetus affected with Structural heart defects and renal anomalies syndrome (SHDRA).
METHODS:
A pedigree with SHDRA (fetus and the parents) who had visited the Affiliated Women and Children's Hospital of Ningbo University in April 2023 was selected as the study subject. Clinical data of the family were collected. A total of 10 mL of amniotic fluid cells from the fetus and 5 mL of peripheral blood samples from the parents were collected for genomic DNA extraction. Trio whole-exome sequencing (Trio-WES) was performed, and Sanger sequencing was used to validate candidate variants in the family. The identified variants were classified according to the Standards and Guidelines for the Interpretation of Sequence Variants established by the American College of Medical Genetics and Genomics (ACMG) (hereinafter referred to as the "ACMG Guidelines). Relevant research literature on SHDRA in domestic and international databases were searched for literature review. This study was approved by the Affiliated Women and Children's Hospital of Ningbo University (Ethics No. EC2023-094).
RESULTS:
In this family, prenatal ultrasound at 18 weeks of gestation revealed left renal multicystic dysplasia in the fetus. After birth, the infant exhibited an ostium secundum atrial septal defect, patent ductus arteriosus, and left renal multicystic dysplasia. Trio-WES revealed that the fetus had carried c.344dup (p.L116Afs*32) and c.90_104dup (p.Ala31_Ala35dup) compound heterozygous variants in the TMEM260 gene, which were respectively inherited from its father and mother. According to the ACMG guidelines, the c.344dup (p.L116Afs*32) and c.90_104dup (p.Ala31_Ala35dup) variants were classified as pathogenic (PM2_Supporting+PVS1+PP4) and likely pathogenic (PM2_Supporting+PM4+PM3+PP4), respectively. According to the literature search strategy set for this study, a total of 6 literature was retrieved, involving 25 SHDRA patients from 20 families. Together with the patients in this study, there were 14 TMEM260 gene variants, most of which were frameshift variants (7 types) and had located in exons 3, 11 and 13. The main clinical features of SHDRA were congenital heart malformation, renal abnormality and neurodevelopmental abnormality, and there was a lack of genotype-phenotype correlation.
CONCLUSION
The c.344dup (p.L116Afs*32) and c.90_104dup (p.Ala31_Ala35dup) variants of the TMEM260 gene probably underlay the SHDRA in this family. Above finding has provided a basis for clinical diagnosis and genetic counseling for the family.
Humans
;
Female
;
Pedigree
;
Membrane Proteins/genetics*
;
Male
;
Heart Defects, Congenital/genetics*
;
Kidney/abnormalities*
;
Pregnancy
;
Adult
;
Kidney Diseases/congenital*
;
Exome Sequencing
;
Mutation
;
Genetic Testing
3.Identification of a novel deep intronic variant associated with Joubert syndrome through combined whole-genome sequencing and RNA sequencing.
Fang LIU ; Yan JIANG ; Xin GUI ; Yangxue XIAO ; Xiaohang ZHANG ; Xuemei ZHANG ; Yali GAO
Chinese Journal of Medical Genetics 2025;42(5):597-602
OBJECTIVE:
To explore the genetic etiology of a Chinese pedigree with recurrent Joubert syndrome with negative results by whole-exome sequencing in the prior proband.
METHODS:
Chinese pedigree which opted elective abortion at the Women and Children's Hospital Affiliated to Chongqing Medical University in December 2024 was selected as the study subject. Whole-genome sequencing was carried out on fetal tissue after termination of pregnancy. Candidate variants were validated by Sanger sequencing and interpreted, while non-coding variant was analyzed using in silico prediction tools. RNA sequencing and cDNA sequencing were conducted on fetal brain tissue. This study was approved by the Medical Ethics Committee of the Hospital (Ethics No.2024YL045-02).
RESULTS:
Both the fetus and the affected child were found to harbor compound heterozygous variants of the CEP290 gene, namely c.7341dup (p.Leu2448fs*8) (pathogenic, maternally inherited) and c.1523-408G>A (likely pathogenic, paternally inherited). Both in silico analysis and fetal brain RNA sequencing confirmed aberrant RNA splicing caused by the intronic variant.
CONCLUSION
This case has highlighted the value of combining whole-genome sequencing with RNA functional validation. Above results not only enriched the spectrum of CEP290 gene mutations but also underscored its diagnostic value in resolving complex prenatal cases, providing critical clues for the prenatal diagnosis and recurrence risk assessment in genetic counseling.
Female
;
Humans
;
Pregnancy
;
Abnormalities, Multiple/genetics*
;
Antigens, Neoplasm/genetics*
;
Cell Cycle Proteins/genetics*
;
Cerebellum/abnormalities*
;
Cytoskeletal Proteins/genetics*
;
Eye Abnormalities/genetics*
;
Introns/genetics*
;
Kidney Diseases, Cystic/diagnosis*
;
Pedigree
;
Retina/abnormalities*
;
Sequence Analysis, RNA/methods*
;
Whole Genome Sequencing/methods*
;
Child
4.Application of chromosomal microarray analysis in the prenatal diagnosis of fetuses with isolated Congenital anomalies of the kidney and urinary tract.
Xiaoyu DU ; Yan MIAO ; Jiashan LI ; Siying LIANG ; Wei ZHAO ; Yingchao ZHOU ; Nan JIANG
Chinese Journal of Medical Genetics 2025;42(9):1033-1038
OBJECTIVE:
To explore the detection rate of copy number variations (CNVs) in fetuses with isolated Congenital anomalies of the kidney and urinary tract (CAKUT) and pregnancy outcomes in order to provide a basis for genetic counseling.
METHODS:
One hundred and eighty eight fetuses who underwent chromosomal microarray analysis (CMA) due to isolated CAKUT detected by prenatal ultrasonography at Qingdao Women and Children's Hospital from January 2021 to December 2024 were selected as the study subjects. According to the ultrasound findings, the fetuses were divided into 8 groups, including renal parenchymal dysplasia group, renal cystic dysplasia group, simple renal parenchymal echo enhancement group, abnormal development of renal collecting system group, duplicated kidney group, ectopic kidney group, horseshoe kidney group, and bladder/posterior urethral abnormalities group. The detection of CNVs was retrospectively analyzed, and the pregnant women were followed up to summarize their pregnancy outcomes. 2 test (or Fisher's exact probability method) was used to compare the CNV detection rates between the groups. This study was approved by the Medical Ethics Committee of the Qingdao Women and Children's Hospital (Ethics No.: QFELL-YJ-2025-85).
RESULTS:
Among the 188 fetuses with isolated CAKUT, 23 CNVs (12.23%) were detected, of which 13 cases (6.91%) were pathogenic and 10 cases were rated as variants of unknown significance (VOUS). Among the 8 groups, the three groups with the highest proportion were renal cystic dysplasia group, renal metaplasia group, and renal parenchymal dysplasia group. The detection rates of pathogenic CNVs in the three groups were 1.79% (1/56), 6.78% (4/59), and 16.67% (5/30), respectively, with statistically significant differences (P < 0.05). Parental verification was conducted on 12 fetuses detected with the CNVs, confirming that 2 cases were de novo and 10 were inherited from parents with a normal phenotype. After genetic counseling, the parents of 9 fetuses opted to terminate the pregnancy, while 11 chose to continue with the pregnancy, and 3 were lost to follow-up. At the time of last follow-up, the youngest offspring was 5 months old and the oldest was 3 years and 11 months old. One child had renal aplasia, and two were born with hydronephrosis, which have been cured through surgery. The remainders had no obvious abnormality with their growth and development.
CONCLUSION
CMA testing has important value for prenatal diagnosis of isolated CAKUT. In this study, the detection rate of pathogenic CNVs has increased sequentially in fetuses with renal cystic developmental abnormalities, renal collecting system developmental abnormalities, and renal parenchymal dysplasia, while there was no significant difference in the detection rate of CNVs. For fetuses with isolated CAKUT detected by prenatal ultrasound, CMA testing should be considered, and reasonable pregnancy decisions should be made based on the results of prenatal ultrasound and parental verification.
Humans
;
Female
;
Pregnancy
;
Prenatal Diagnosis/methods*
;
DNA Copy Number Variations/genetics*
;
Kidney/abnormalities*
;
Adult
;
Ultrasonography, Prenatal
;
Urogenital Abnormalities/diagnosis*
;
Microarray Analysis/methods*
;
Retrospective Studies
;
Urinary Tract/abnormalities*
;
Fetus
;
Pregnancy Outcome
;
Vesico-Ureteral Reflux
5.Clinical features and genetic analysis of two Chinese pedigrees affected with Joubert syndrome.
Dengzhi ZHAO ; Yan CHU ; Ke YANG ; Xiaodong HUO ; Xingxing LEI ; Yanli YANG ; Chaoyang ZHANG ; Hai XIAO ; Shixiu LIAO
Chinese Journal of Medical Genetics 2023;40(1):21-25
OBJECTIVE:
To explore the clinical characteristics and genetic basis of two Chinese pedigrees affected with Joubert syndrome.
METHODS:
Clinical data of the two pedigrees was collected. Genomic DNA was extracted from peripheral blood samples and subjected to high-throughput sequencing. Candidate variants were verified by Sanger sequencing. Prenatal diagnosis was carried out for a high-risk fetus from pedigree 2.
RESULTS:
The proband of pedigree 1 was a fetus at 23+5 weeks gestation, for which both ultrasound and MRI showed "cerebellar vermis malformation" and "molar tooth sign". No apparent abnormality was noted in the fetus after elected abortion. The fetus was found to harbor c.812+3G>T and c.1828G>C compound heterozygous variants of the INPP5E gene, which have been associated with Joubert syndrome type 1. The proband from pedigree 2 had growth retardation, mental deficiency, peculiar facial features, low muscle tone and postaxial polydactyly of right foot. MRI also revealed "cerebellar dysplasia" and "molar tooth sign". The proband was found to harbor c.485C>G and c.1878+1G>A compound heterozygous variants of the ARMC9 gene, which have been associated with Joubert syndrome type 30. Prenatal diagnosis found that the fetus only carried the c.485C>G variant. A healthy infant was born, and no anomalies was found during the follow-up.
CONCLUSION
The compound heterozygous variants of the INPP5E and ARMC9 genes probably underlay the disease in the two pedigrees. Above finding has expanded the spectrum of pathogenic variants underlying Joubert syndrome and provided a basis for genetic counseling and prenatal diagnosis.
Female
;
Humans
;
Pregnancy
;
Pedigree
;
Cerebellum/abnormalities*
;
Abnormalities, Multiple/diagnosis*
;
Eye Abnormalities/diagnosis*
;
Kidney Diseases, Cystic/diagnosis*
;
Phosphoric Monoester Hydrolases/genetics*
;
Retina/abnormalities*
;
East Asian People
;
Mutation
6.Clinical and genetic analyses of Joubert syndrome in children.
Guang-Yu ZHANG ; Yun-Xia ZHAO ; Hui-Ling ZHAO ; Guo-Hao TANG ; Peng-Liang WANG ; Deng-Na ZHU
Chinese Journal of Contemporary Pediatrics 2023;25(5):497-501
OBJECTIVES:
To study the clinical and genetic features of Joubert syndrome (JS) in children.
METHODS:
A retrospective analysis was performed on the clinical data, genetic data, and follow-up data of 20 children who were diagnosed with JS in the Department of Children's Rehabilitation, the Third Affiliated Hospital of Zhengzhou University, from January 2017 to July 2022.
RESULTS:
Among the 20 children with JS, there were 11 boys and 9 girls. The common clinical manifestations were developmental delay (20 children, 100%), abnormal eye movement (19 children, 95%), and hypotonia (16 children, 80%), followed by abnormal respiratory rhythm in 5 children (25%) and unusual facies (including prominent forehead, low-set ears, and triangular mouth) in 3 children (15%), and no limb deformity was observed. All 20 children (100%) had the typical "molar tooth sign" and "midline cleft syndrome" on head images, and 6 children (30%) had abnormal eye examination results. Genetic testing was performed on 7 children and revealed 6 pathogenic genes, i.e., the CPLANE1, RPGRIP1L, MKS1, CC2D2A, CEP120, and AHI1 genes.
CONCLUSIONS
For children with developmental delay, especially those with abnormal eye movement and hypotonia, it is recommended to perform a head imaging examination to determine the presence or absence of "molar tooth sign" and "midline cleft syndrome", so as to screen for JS to avoid missed diagnosis and misdiagnosis. There are many pathogenic genes for JS, and whole-exome sequencing can assist in the diagnosis of JS.
Male
;
Female
;
Humans
;
Child
;
Cerebellum
;
Abnormalities, Multiple/genetics*
;
Kidney Diseases, Cystic/genetics*
;
Eye Abnormalities/genetics*
;
Retina
;
Retrospective Studies
;
Muscle Hypotonia/genetics*
7.Clinical and genetic analysis of a newborn with hypoparathyroidism, sensorineural hearing loss, and renal dysplasia syndrome.
Qiaoyan SHAO ; Peilin WU ; Biyun LIN ; Senjing CHEN ; Jian LIU ; Suqing CHEN
Chinese Journal of Medical Genetics 2022;39(2):222-226
OBJECTIVE:
To analyze the clinical phenotype and genetic basis for a male neonate featuring hypoparathyroidism, sensorineural hearing loss, and renal dysplasia (HDR) syndrome.
METHODS:
The child was subjected to genome-wide copy number variation (CNVs) analysis and whole exome sequencing (WES). Clinical data of the patient was analyzed. A literature review was also carried out.
RESULTS:
The patient, a male neonate, had presented with peculiar facial appearance, simian crease and sacrococcygeal mass. Blood test revealed hypocalcemia, hypoparathyroidism. Hearing test suggested bilateral sensorineural deafness. Doppler ultrasound showed absence of right kidney. Copy number variation sequencing revealed a 12.71 Mb deletion at 10p15.3-p13 (chr10: 105 001_12 815 001) region. WES confirmed haploinsufficiency of the GATA3 gene. With supplement of calcium and vitamin D, the condition of the child has improved.
CONCLUSION
The deletion of 10p15.3p13 probably underlay the HDR syndrome in this patient.
DNA Copy Number Variations
;
Hearing Loss, Sensorineural/genetics*
;
Humans
;
Hypoparathyroidism/genetics*
;
Infant, Newborn
;
Kidney/abnormalities*
;
Male
;
Syndrome
;
Urogenital Abnormalities/genetics*
8.Phenotypic analysis and variant identification of a fetus with Joubert syndrome 17.
Yan ZHAO ; Yanhui ZHAO ; Yuan LYU ; Hong PANG
Chinese Journal of Medical Genetics 2021;38(9):841-844
OBJECTIVE:
To analyze the phenotype and genetic variant of a fetus with dysplasia of cerebellar vermis.
METHODS:
Gestational status and family history of the gravida was taken in combination with the imaging results of the fetus. Following elected abortion, fetal tissue and peripheral blood samples of the couple were collected for the extraction of genome DNA. Whole exome sequencing was carried out to screen potential variant associated with the phenotype of the proband. Specific PCR primers were designed to verify the results by Sanger sequencing.
RESULTS:
Prenatal ultrasound revealed that the fetal vermis cerebellum was poorly developed, which was similar to the previous pregnancy. Whole exome sequencing revealed that the fetus has carried compound heterozygous variants of the CPLANE1 gene, namely c.7978C>T and c.7169delT, which were respectively inherited from the husband and wife.
CONCLUSION
The c.7978C>T and c.7169delT compound heterozygous variants of the CPLANE1 gene probably underlay the dysplasia of cerebellar vermis in the fetus, which has provided a basis for genetic counseling and prenatal diagnosis.
Abnormalities, Multiple/genetics*
;
Cerebellum/diagnostic imaging*
;
Eye Abnormalities/genetics*
;
Female
;
Fetus
;
Humans
;
Kidney Diseases, Cystic
;
Mutation
;
Phenotype
;
Pregnancy
;
Retina/abnormalities*
9.Phenotype and genotype analysis of a pedigree affected with Joubert syndrome due to variant of TMEM237 gene.
Shandan CUI ; Haijuan LOU ; Haijun YIN ; Fangfang GENG ; Ning LI ; Lirong MA
Chinese Journal of Medical Genetics 2021;38(12):1211-1215
OBJECTIVE:
To explore the pathogenesis of two siblings (including a fetus) from a pedigree affected with Joubert syndrome.
METHODS:
Peripheral blood samples of the proband and his parents as well as amniotic fluid and abortion tissues of the fetus were collected. Part of the samples were used for the extraction of DNA, and whole exome sequencing (WES) was carried out to screen potential variants in the proband and his parents. Suspected variants were subjected to bioinformatics analysis with consideration of the clinical phenotype, and were verified by Sanger sequencing of the proband, fetus and their parents.The remainders were used for the extraction of RNA, and the mechanism of splicing variant was validated by reverse transcription-PCR (RT-PCR).
RESULTS:
WES showed that both patients have carried c.175C>T (p.R59X) and c.553+1G>A compound heterozygous variants of the TMEM237 gene. Among these, c.175C>T was a nonsense mutation inherited from the asymptomatic mother, while c.553+1G>A was an alternative splicing mutation inherited from the asymptomatic father. RT-PCR showed that this variant has resulted in aberrant splicing by exon skipping.
CONCLUSION
The compound heterozygous variants of the TMEM237 gene probably underlay the etiology of Joubert syndrome in this pedigree. Above finding has enriched the phenotype and variant spectrum of the TMEM237 gene, and facilitated genetic counseling and prenatal diagnosis for the family.
Abnormalities, Multiple/genetics*
;
Cerebellum/abnormalities*
;
Eye Abnormalities
;
Female
;
Genotype
;
Humans
;
Kidney Diseases, Cystic
;
Mutation
;
Pedigree
;
Phenotype
;
Pregnancy
;
Retina/abnormalities*
10.Genetic testing and prenatal diagnosis for two families affected with Joubert syndrome.
Zhouxian BAI ; Shuang HU ; Ning LIU ; Qinghua WU ; Xiangdong KONG
Chinese Journal of Medical Genetics 2020;37(5):509-513
OBJECTIVE:
To identify pathogenic variants in two families with patients suspected for Joubert syndrome(UBST) by cerebellar vermis hypoplasia.
METHODS:
Clinical data and peripheral venous blood and skin tissue samples were collected for the extraction of genomic DNA. Potential variants were screened by using targeted capture and next generation sequencing. Suspected variants were validated by PCR and Sanger sequencing. The frequency of the variants in the population was calculated. Pathogenicity of the variants was predicted by following the guidelines of the American College of Medical Genetics and Genomics (ACMG). Prenatal diagnosis was provided to these families upon subsequent pregnancy.
RESULTS:
The proband of family 1 was found to harbor homozygous c.2072delT (p.F691S*fs19) frameshift variant of the AHI1 gene, which may cause premature termination of translation of the Abelson helper integration site 1 after the 691st amino acid. The proband of family 2 was found to harbor compound heterozygous variants of the CPLANE1 gene, namely c.7243dupA (p.T2415Nfs*7) and c.8001delG (p.K2667Nfs*31), which can respectively lead to premature termination of translation of ciliogenesis and planar polarity effector 1 after the 2145th and 2667th amino acids. All of the three variants were previously unreported, and were predicted to be pathogenic by bioinformatic analysis.
CONCLUSION
The AHI1 c.2072delT and CPLANE1 c.7243dupA and c.8001delG variants probably underlay JBTS3 in family 1 and JBTS17 in family 2, respectively. Based on above results, prenatal diagnosis may be offered to the affected families upon their subsequent pregnancies.
Abnormalities, Multiple
;
diagnosis
;
genetics
;
Adaptor Proteins, Vesicular Transport
;
genetics
;
Cerebellum
;
abnormalities
;
Eye Abnormalities
;
diagnosis
;
genetics
;
Female
;
Genetic Testing
;
Genetic Variation
;
Humans
;
Kidney Diseases, Cystic
;
diagnosis
;
genetics
;
Membrane Proteins
;
genetics
;
Mutation
;
Pregnancy
;
Prenatal Diagnosis
;
Retina
;
abnormalities

Result Analysis
Print
Save
E-mail