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1.
BMC Med Genomics ; 17(1): 95, 2024 Apr 20.
Article En | MEDLINE | ID: mdl-38643142

NSUN2-intellectual disability syndrome, also known as intellectual disability type 5 (MRT5), is an autosomal recessive disorder that is characterized by intellectual disability (ID), postnatal growth retardation, dysmorphic facies, microcephaly, short stature, developmental delay, language impairment and other congenital abnormalities. The disease is caused by mutations in the NSUN2 gene, which encodes a tRNA cytosine methyltransferase that has an important role in spindle assembly during mitosis and chromosome segregation. In this study, we recruited a family that had two individuals with ID. Whole exome sequencing was performed to identify a homozygous frameshift variant (c.1171_1175delACCAT(p.Thr391fs*18*)) in NSUN2 (NM_017755.5) in the proband. The varint was confirmed as segregating in his affected brother and his parents by Sanger sequencing. The individuals that we described showed a similar dysmorphology profile to that associated with MRT5. To analyze the correlations between genotypes of NSUN2 and phenotypes of individuals with ID, we examined 17 variants and the associated phenotypes from 32 ID individuals in current and previous studies. We concluded that mutations in NSUN2 cause a wide range of phenotypic defects. Although some clinical manifestations were highly variable, the core phenotypes associated with NSUN2 mutations were dysmorphic facies, microcephaly, short stature, ID, growth restriction, language impairment, hypotonia and delayed puberty. Our study expands the genetic spectrum of NSUN2 mutations and helps to further define the genotype-phenotype correlations in MRT5.


Dwarfism , Intellectual Disability , Language Development Disorders , Microcephaly , Nervous System Malformations , Male , Humans , Intellectual Disability/genetics , Microcephaly/genetics , Facies , Mutation , Phenotype , China , Pedigree , Methyltransferases/genetics
2.
Zhonghua Bing Li Xue Za Zhi ; 53(5): 452-457, 2024 May 08.
Article Zh | MEDLINE | ID: mdl-38678325

Objective: To investigate the role of RNA m6A methylation in mediating cerebellar dysplasia through analyzing the phenotypes of the mouse cerebella and the expression of several key m6A regulators upon hypobaric hypoxia treatment. Methods: Five-day old C57/BL6 mice were exposed to hypobaric hypoxia for 9 days. The status of mouse cerebellar development was analyzed by comparing the body weights, brain weights and histological features. Immunostaining of cell-type-specific markers was performed to analyze the cerebellar morphology. Real-time PCR, Western blot and immunohistochemical staining were performed to detect the expression of key m6A regulators in the mouse cerebella. Results: Compared with the control, the body weights, brain weights and cerebellar volumes of hypobaric hypoxic mice were significantly reduced (P<0.01). The expression of specific markers in different cells, including NeuN (mature neuron), Calbindin-D28K (Purkinje cell) and GFAP (astrocyte), was decreased in hypobaric hypoxic mouse cerebella (P<0.01), accompanied with disorganized cellular structure. The expression of methyltransferase METTL3 was significantly down-regulated in the cerebella of hypobaric hypoxic mice (P<0.05). Conclusions: Hypobaric hypoxia stimulation causes mouse cerebellar dysplasia, with structural abnormalities in mature granular neurons, Purkinje cells and astrocytes. Expression of METTL3 is decreased in hypobaric hypoxic mice cerebellum compared with that of normobaric normoxic mice, suggesting that its mediated RNA m6A methylation may play an important role in hypobaric hypoxia-induced mouse cerebellar dysplasia.


Calbindins , Cerebellum , DNA-Binding Proteins , Hypoxia , Methyltransferases , Mice, Inbred C57BL , Nerve Tissue Proteins , Purkinje Cells , Animals , Mice , Cerebellum/metabolism , Hypoxia/metabolism , Nerve Tissue Proteins/metabolism , Nerve Tissue Proteins/genetics , Purkinje Cells/metabolism , Purkinje Cells/pathology , Calbindins/metabolism , Calbindins/genetics , Methyltransferases/metabolism , Methyltransferases/genetics , Glial Fibrillary Acidic Protein/metabolism , Glial Fibrillary Acidic Protein/genetics , Astrocytes/metabolism , Down-Regulation , Methylation , Adenosine/metabolism , Adenosine/analogs & derivatives , Nervous System Malformations/metabolism , Nervous System Malformations/genetics
3.
Sci Rep ; 14(1): 8411, 2024 04 10.
Article En | MEDLINE | ID: mdl-38600369

The primary aim of this study was to estimate the incidence of posterior fossa anomalies (PFA) and assess the associated outcomes in King Abdulaziz Medical City (KAMC), Riyadh. All fetuses diagnosed by prenatal ultrasound with PFA from 2017 to 2021 in KAMC were analyzed retrospectively. PFA included Dandy-Walker malformation (DWM), mega cisterna magna (MCM), Blake's pouch cyst (BPC), and isolated vermian hypoplasia (VH). The 65 cases of PFA were 41.5% DWM, 46.2% MCM, 10.8% VH, and 1.5% BPC. The annual incidence rates were 2.48, 2.64, 4.41, 8.75, and 1.71 per 1000 anatomy scans for 2017, 2018, 2019, 2020, and 2021, respectively. Infants with DWM appeared to have a higher proportion of associated central nervous system (CNS) abnormalities (70.4% vs. 39.5%; p-value = 0.014) and seizures than others (45% vs. 17.9%; p-value = 0.041). Ten patients with abnormal genetic testing showed a single gene mutation causing CNS abnormalities, including a pathogenic variant in MPL, C5orf42, ISPD, PDHA1, PNPLA8, JAM3, COL18A1, and a variant of uncertain significance in the PNPLA8 gene. Our result showed that the most common PFA is DWM and MCM. The autosomal recessive pathogenic mutation is the major cause of genetic disease in Saudi patients diagnosed with PFA.


Dandy-Walker Syndrome , Nervous System Malformations , Pregnancy , Female , Infant, Newborn , Humans , Retrospective Studies , Dandy-Walker Syndrome/diagnostic imaging , Dandy-Walker Syndrome/epidemiology , Dandy-Walker Syndrome/genetics , Prenatal Diagnosis , Fetus/pathology , Ultrasonography, Prenatal , Magnetic Resonance Imaging
6.
Sci Adv ; 10(17): eade1650, 2024 Apr 26.
Article En | MEDLINE | ID: mdl-38669326

While the kinesin-2 motors KIF3A and KIF3B have essential roles in ciliogenesis and Hedgehog (HH) signal transduction, potential role(s) for another kinesin-2 motor, KIF17, in HH signaling have yet to be explored. Here, we investigated the contribution of KIF17 to HH-dependent cerebellar development, where Kif17 is expressed in both HH-producing Purkinje cells and HH-responding cerebellar granule neuron progenitors (CGNPs). Germline Kif17 deletion in mice results in cerebellar hypoplasia due to reduced CGNP proliferation, a consequence of decreased HH pathway activity mediated through decreased Sonic HH (SHH) protein. Notably, Purkinje cell-specific Kif17 deletion partially phenocopies Kif17 germline mutants. Unexpectedly, CGNP-specific Kif17 deletion results in the opposite phenotype-increased CGNP proliferation and HH target gene expression due to altered GLI transcription factor processing. Together, these data identify KIF17 as a key regulator of HH-dependent cerebellar development, with dual and opposing roles in HH-producing Purkinje cells and HH-responding CGNPs.


Cerebellum , Cerebellum/abnormalities , Hedgehog Proteins , Kinesins , Nervous System Malformations , Purkinje Cells , Animals , Kinesins/metabolism , Kinesins/genetics , Cerebellum/metabolism , Cerebellum/growth & development , Hedgehog Proteins/metabolism , Hedgehog Proteins/genetics , Mice , Purkinje Cells/metabolism , Signal Transduction , Cell Proliferation , Mice, Knockout , Gene Expression Regulation, Developmental , Neural Stem Cells/metabolism , Neural Stem Cells/cytology , Zinc Finger Protein GLI1/metabolism , Zinc Finger Protein GLI1/genetics , Developmental Disabilities
7.
Radiologie (Heidelb) ; 64(5): 410-419, 2024 May.
Article De | MEDLINE | ID: mdl-38639917

CLINICAL ISSUE: Malformations of the central nervous system belong to the most common developmental disorders in humans. The clinical presentation of brain malformations is nonspecific including developmental delay, hypotonia, and/or epilepsy. The great heterogeneity concerning etiology, mechanisms of development and morphology is challenging for diagnosis and classification of brain malformations. Thereby recognizing specific malformations is essential for optimal patient management and prognostic evaluation. The aim of this article is to give an overview of several clinically relevant brain malformations occurring from different disrupted developmental processes in brain formation. STANDARD RADIOLOGICAL METHODS: Several brain malformations are already diagnosed during routine ultrasound in pregnancy. However pre- and postnatal magnetic resonance imaging remains the gold standard in detecting the partially subtle changes and to classify the malformations. METHODICAL INNOVATIONS: Advances in pre- and postnatal neuroimaging techniques and increasing investigation of genetic mechanisms underlying brain formation and its abnormalities have led to a better understanding of embryologic development and pathogeneses of brain malformations. CONCLUSION: Besides patient's history and clinical phenotype, neuroimaging plays a key role in diagnosis. Not always a specific diagnosis can be made, but neuroimaging patterns often enable a focused genetic testing and therefore are revolutionary for etiologic and prognostic assignment. Basic knowledge of brain development facilitates understanding and classifying of structural brain abnormalities.


Brain , Humans , Brain/abnormalities , Brain/diagnostic imaging , Brain/pathology , Magnetic Resonance Imaging , Nervous System Malformations/diagnosis , Nervous System Malformations/diagnostic imaging , Nervous System Malformations/genetics , Nervous System Malformations/pathology , Nervous System Malformations/classification , Neuroimaging/methods , Female , Infant, Newborn , Pregnancy
9.
Mol Genet Genomic Med ; 12(4): e2424, 2024 Apr.
Article En | MEDLINE | ID: mdl-38546112

BACKGROUND: The ASNS (ASNS, MIM 108370) gene variations are responsible for asparagine synthetase deficiency (ASNSD, MIM 615574), a very rare autosomal recessive disease characterized by cerebral anomalies. These patients have congenital microcephaly, progressive encephalopathy, severe intellectual disability, and intractable seizures. METHOD: Clinical characteristics of the patient were collected. Exome sequencing was used for the identification of variants. Sanger sequencing was used to confirm the variant in the target region. The structure of the protein was checked using the DynaMut2 web server. RESULTS: The proband is an 11-year-old Iranian-Azeri girl with primary microcephaly and severe intellectual disability in a family with a consanguineous marriage. Symptoms emerged around the 10-20th days of life, when refractory epileptic gaze and unilateral tonic-clonic seizures initiated without any provoking factor such as fever. A brain MRI revealed no abnormalities except for brain atrophy. The karyotype was normal. Using exome sequencing, we identified a novel homozygous variant of thymine to adenine (NM_001673.5:c.538T>A) in the ASNS gene. Both parents had a heterozygous variant in this location. Subsequently, Sanger sequencing confirmed this variant. We also reviewed the clinical manifestations and MRI findings of the previously reported patients. CONCLUSION: In the present study, a novel homozygous variant was recognized in the ASNS gene in an Iranian-Azeri girl manifesting typical ASNSD symptoms, particularly intellectual disability and microcephaly. This study expands the mutation spectrum of ASNSD and reviews previously reported patients.


Brain Diseases , Intellectual Disability , Microcephaly , Nervous System Malformations , Female , Humans , Child , Microcephaly/genetics , Microcephaly/diagnosis , Intellectual Disability/genetics , Intellectual Disability/diagnosis , Iran , Brain Diseases/genetics , Atrophy
10.
J Clin Pediatr Dent ; 48(2): 196-203, 2024 Mar.
Article En | MEDLINE | ID: mdl-38548650

Self-inflicted oral injuries, accidental or otherwise, can cause major consequences. Measures need to be taken to protect individuals from chronic self-injurious behaviour; however, there are no official guidelines on the subject. The purpose of this article is to show the case of a 1-year-old patient with neurological disorders who, following the eruption of deciduous teeth, had self-inflicted a traumatic ulcer on his tongue and lower lip. Following a multidisciplinary approach involving several operating units of our hospital to make a diagnosis, an oral device was designed to completely cover the dental elements to prevent recurrence of the trauma and to prevent further worsening of the injuries already caused. The purpose of this work is to demonstrate that although the surgical approach, such as extraction of the dental elements, may be the quickest solution in situations similar to the one presented, the high biological cost and irreversibility of the result lead to seeking alternatives and more conservative solutions such as the one described.


Cerebellum/abnormalities , Nervous System Diseases , Nervous System Malformations , Self Mutilation , Self-Injurious Behavior , Infant , Humans , Self Mutilation/etiology , Self Mutilation/prevention & control , Self-Injurious Behavior/complications , Self-Injurious Behavior/prevention & control , Nervous System Diseases/complications , Dental Care/adverse effects , Developmental Disabilities
11.
Neurochirurgie ; 70(2): 101547, 2024 Mar.
Article En | MEDLINE | ID: mdl-38458060

INTRODUCTION: Congenital malformations of the central nervous system (CNS) are morphological abnormalities of the brain and spinal cord that occur during fetal development. They constitute the second most common congenital disability, after congenital cardiac defects. Many risk factors have been identified; however, these studies included various types of congenital abnormality. Furthermore, there is a lack of information on risk factors for congenital CNS malformation, and notably in the Zinder region of Niger. OBJECTIVE: This study aimed to identify the risk factors associated with congenital CNS malformations in the Zinder region. METHODS: In a case-control design, patients with congenital CNS malformation were enrolled between June 2022 and April 2023 in the Department of Neurosurgery of the National Hospital of Zinder. RESULTS: Family history of malformation (aOR:3.31, 95% CI:1.25-8.78) and consanguine marriage (aOR:2.28, 95% CI:1.23-4.20) were significantly associated with congenital CNS malformation. In contrast, folic acid supplementation (aOR:0.34, 95% CI:0.13, 0.89), multiparity (aOR:0.34, 95% CI:0.13, 0.89), and grand multiparity (aOR, 0.47; 95% CI:0.23, 0.97) had a protective effect. CONCLUSION: Risk factors such as family malformation history and consanguine marriage increased the risk of developing congenital malformations of the central nervous system. In contrast, folic acid supplementation in the index period and multiparity had a significant protective effect.


Nervous System Malformations , Humans , Niger/epidemiology , Nervous System Malformations/epidemiology , Risk Factors , Folic Acid
12.
Int J Mol Sci ; 25(5)2024 Mar 01.
Article En | MEDLINE | ID: mdl-38474113

NOTCH1-related leukoencephalopathy is a new diagnostic entity linked to heterozygous gain-of-function variants in NOTCH1 that neuroradiologically show some overlap with the inflammatory microangiopathy Aicardi-Goutières syndrome (AGS). To report a 16-year-old boy harbouring a novel NOTCH1 mutation who presented neuroradiological features suggestive of enhanced type I interferon signalling. We describe five years of follow-up and review the current literature on NOTCH1-related leukoencephalopathy. Clinical evaluation, standardised scales (SPRS, SARA, CBCL, CDI-2:P, WISCH-IV and VABS-2) and neuroradiological studies were performed, as well as blood DNA analysis. For the literature review, a search was performed on Pubmed, Scopus and Web of Science up to December 2023 using the following text word search strategy: (NOTCH1) AND (leukoencephalopathy). Our patient presents clinical features consistent with other reported cases with NOTCH1 mutations but is among the minority of patients with an onset after infancy. During the five-year follow-up, we observed an increase in the severity of spasticity and ataxia. However, at the age of 16 years, our proband is still ambulatory. As for other reported patients, he manifests psychiatric features ranging from hyperactivity during childhood to anxiety and depression during adolescence. The neuroradiological picture remained essentially stable over five years. In addition to the typical findings of leukoencephalopathy with cysts and calcifications already described, we report the presence of T2-hyperintensity and T1-hypotensity of the transverse pontine fibres, enhancement in the periventricular white matter after gadolinium administration and decreased NAA and Cho peaks in the periventricular white matter on MRS. We identified a novel heterozygous variant in NOTCH1 (c.4788_4799dup), a frame insertion located in extracellular negative regulatory region (NRR)-domain as in previously published cases. Blood interferon signalling was not elevated compared to controls. This case provides further data on a new diagnostic entity, i.e., NOTCH1-related leukoencephalopathy. By describing a standardised five-year follow-up in one case and reviewing the other patients described to date, we outline recommendations relating to monitoring in this illness, emphasising the importance of psychiatric and gastroenterological surveillance alongside neurological and neuropsychological management. Studies are needed to better understand the factors influencing disease onset and severity, which are heterogeneous.


Cysts , Leukoencephalopathies , Nervous System Malformations , Male , Adolescent , Humans , Brain , Leukoencephalopathies/genetics , Nervous System Malformations/genetics , Mutation , Magnetic Resonance Imaging , Receptor, Notch1/genetics
13.
Mol Genet Metab ; 142(1): 108346, 2024 May.
Article En | MEDLINE | ID: mdl-38368708

OBJECTIVE: Aicardi Goutières Syndrome (AGS) is a genetic interferonopathy associated with multisystemic heterogeneous disease and neurologic dysfunction. AGS includes a broad phenotypic spectrum which is only partially explained by genotype. To better characterize this variability, we will perform a systematic analysis of phenotypic variability in familial cases of AGS. METHODS: Among thirteen families, twenty-six siblings diagnosed with AGS were identified from the Myelin Disorders and Biorepository Project (MDBP) at the Children's Hospital of Philadelphia. Data were collected on the age of onset, genotype, neurologic impairment, and systemic complications. Neurologic impairment was assessed by a disease-specific scale (AGS Severity Scale) at the last available clinical encounter (range: 0-11 representing severe - attenuated phenotypes). The concordance of clinical severity within sibling pairs was categorized based on the difference in AGS Scale (discordant defined as >2-unit difference). The severity classifications were compared between sibling sets and by genotype. RESULTS: Five genotypes were represented: TREX1 (n = 4 subjects), RNASEH2B (n = 8), SAMHD1 (n = 8) ADAR1 (n = 4), and IFIH1 (n = 2). The older sibling was diagnosed later relative to the younger affected sibling (median age 7.32 years [IQR = 14.1] compared to 1.54 years [IQR = 10.3]). Common presenting neurologic symptoms were tone abnormalities (n = 10/26) and gross motor dysfunction (n = 9/26). Common early systemic complications included dysphagia and chilblains. The overall cohort median AGS severity score at the last encounter was 8, while subjects presenting with symptoms before one year had a median score of 5. The TREX1 cohort presented at the youngest age and with the most severe phenotype on average. AGS scores were discordant for 5 of 13 sibling pairs, most commonly in the SAMHD1 pairs. Microcephaly, feeding tube placement, seizures and earlier onset sibling were associated with lower AGS scores (respectively, Wilcoxon rank sum: p = 0.0001, p < 0.0001, p = 0.0426, and Wilcoxon signed rank: p = 0.0239). CONCLUSIONS: In this systematic analysis of phenotypic variability in familial cases, we found discordance between siblings affected by AGS. Our results underscore the heterogeneity of AGS and suggest factors beyond AGS genotype may affect phenotype. Understanding the critical variables associated with disease onset and severity can guide future therapeutic interventions and clinical monitoring. This report reinforces the need for further studies to uncover potential factors to better understand this phenotypic variability, and consequently identify potential targets for interventions in attempt to change the natural history of the disease.


Autoimmune Diseases of the Nervous System , Exodeoxyribonucleases , Genetic Association Studies , Genotype , Nervous System Malformations , Phenotype , Siblings , Humans , Autoimmune Diseases of the Nervous System/genetics , Nervous System Malformations/genetics , Nervous System Malformations/complications , Female , Male , Child, Preschool , Child , Infant , Exodeoxyribonucleases/genetics , Phosphoproteins/genetics , Ribonuclease H/genetics , SAM Domain and HD Domain-Containing Protein 1/genetics , Adolescent , Monomeric GTP-Binding Proteins/genetics , Interferon-Induced Helicase, IFIH1/genetics , Mutation , RNA-Binding Proteins/genetics , Age of Onset , Severity of Illness Index
15.
J Clin Immunol ; 44(3): 68, 2024 Feb 21.
Article En | MEDLINE | ID: mdl-38381212

Aicardi-Goutières syndrome (AGS) is a genetic interferonopathy characterized by upregulation of type I interferon response. It is associated with increased mortality and severe disabilities. Janus Kinase (JAK) inhibitors have shown effectiveness in treatment of AGS through blocking the downstream effects of interferon activation. We illustrate post-mortem histopathologic findings in a patient with AGS who received baricitinib treatment for a duration of over 4 years, initiating at a remarkably young age of 2 months. We observed global cerebral atrophy, markedly diminished white matter, abundant calcifications involving supratentorial white matter, basal ganglia, dentate nuclei, and brainstem. This study showed profound central nervous system (CNS) sequelae despite early initiation of treatment. Our findings highlight the potential necessity for therapeutic options with enhanced CNS bioavailability.


Autoimmune Diseases of the Nervous System , Janus Kinase Inhibitors , Nervous System Malformations , Humans , Infant , Janus Kinase Inhibitors/therapeutic use , Autoimmune Diseases of the Nervous System/drug therapy , Autoimmune Diseases of the Nervous System/genetics , Disease Progression
16.
Mol Immunol ; 168: 1-9, 2024 Apr.
Article En | MEDLINE | ID: mdl-38367301

Dysfunctional mutations in SAMHD1 cause Aicardi-Goutières Syndrome, an autoinflammatory encephalopathy with elevated interferon-α levels in the cerebrospinal fluid. Whether loss of function mutations in SAMHD1 trigger the expression of other cytokines apart from type I interferons in Aicardi-Goutières Syndrome is largely unclear. This study aimed to explore whether SAMHD1 dysfunction regulated the expression of IL-34, a key cytokine controlling the development and maintenance of microglia, in SH-SY5Y neural cells. We found that downregulation of SAMHD1 in SH-SY5Y cells resulted in the upregulation of IL-34 expression. The protein and mRNA levels of NF-κB p65, the transactivating subunit of a transcription factor NF-κB, were also upregulated in SAMHD1-knockdown SH-SY5Y cells. It was further found SAMHD1 knockdown in SH-SY5Y cells induced an upregulation of IL-34 expression through the canonical NF-κB-dependent pathway in which NF-κB p65, IKKα/ß and the NF-κB inhibitor IκBα were phosphorylated. Moreover, knockdown of SAMHD1 in SH-SY5Y cells led to the translocation of NF-κB p65 into the nucleus and promoted NF-κB transcriptional activity. In conclusion, we found SAMHD1 dysfunction induced IL-34 expression via NF-κB p65 in neuronal SH-SY5Y cells. This finding could lay the foundation for exploring the role of IL-34-targeting microglia in the pathogenesis of Aicardi-Goutières Syndrome.


Autoimmune Diseases of the Nervous System , Nervous System Malformations , Neuroblastoma , Humans , NF-kappa B/metabolism , SAM Domain and HD Domain-Containing Protein 1 , Neuroblastoma/genetics , NF-KappaB Inhibitor alpha , Cytokines , Interleukins
17.
Am J Case Rep ; 25: e942748, 2024 Feb 20.
Article En | MEDLINE | ID: mdl-38374616

BACKGROUND Caudal regression syndrome (CRS) is a rare anomaly characterized by maldevelopment of the caudal half of the body and can involve the genitourinary system. This report presents the case of a 13-year-old girl diagnosed with CRS and previously unknown distal vaginal atresia, presenting with monthly pelvic pain. CASE REPORT A 13-year-old pre-menarcheal patient with CRS sought emergency care due to debilitating monthly pelvic pain persisting for 3 months. Pelvic examination revealed the absence of a vaginal opening, and a rectal exam showed a 5-cm large bulge anteriorly, along with a 2-cm fibrous septum in the distal portion of the vagina. Pelvic ultrasound and magnetic resonance imaging confirmed the presence of hematometrocolpus and hematosalpinx on the right adnexa, while the left ovary was not identified. Treatment commenced with fixed analgesia and combined continuous oral contraception. Due to the persistent pain and uncertainty regarding the anatomy of the internal reproductive organs, diagnostic laparoscopy with drainage of the hematocolpus was performed 2 weeks later. Six months later, after multidisciplinary discussion, definitive surgery (pull-through vaginoplasty) was carried out, allowing for emotional preparation for postoperative dilation. One year after the definitive surgery, the patient remains asymptomatic, experiencing regular withdrawal bleeding with no signs of obstruction. CONCLUSIONS Patients with musculoskeletal anomalies should undergo urogenital tract evaluation. Timely identification of distal vaginal atresia is pivotal for devising appropriate treatment and averting complications. During the acute phase, laparoscopic drainage can alleviate symptoms and clarify anatomy, without compromising the success of subsequent definitive surgery.


Abnormalities, Multiple , Congenital Abnormalities , Nervous System Malformations , Vagina/abnormalities , Female , Humans , Adolescent , Vagina/surgery , Nervous System Malformations/complications , Pelvic Pain/etiology
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