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Keywords = BWS, Beckwith–Wiedemann syndrome

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25 pages, 2267 KB  
Article
Genetic and Epigenetic Drivers of Wilms Tumor Predisposition in Russian Pediatric Patients: A Multicenter Study
by Vera Semenova, Garik Sagoyan, Elena Zhukovskaya, Valentina Kozlova, Nina Gegelia, Anna Mitrofanova, Amina Suleymanova, Alexander Druy, Ekaterina Zelenova, Vladislav Pavlov, Marina Rubanskay, Alexander Karelin, Svetlana Varfolomeeva and Tatiana Nasedkina
Int. J. Mol. Sci. 2026, 27(9), 4066; https://doi.org/10.3390/ijms27094066 - 1 May 2026
Cited by 1 | Viewed by 902
Abstract
Wilms tumor (WT), the most common kidney neoplasm in children, is closely associated with hereditary factors. This study included 134 WT patients (62 males, median age of 7 years, age at diagnosis of 24.9 months) with unilateral (n = 90, 67%) or [...] Read more.
Wilms tumor (WT), the most common kidney neoplasm in children, is closely associated with hereditary factors. This study included 134 WT patients (62 males, median age of 7 years, age at diagnosis of 24.9 months) with unilateral (n = 90, 67%) or bilateral WT (n = 44, 33%). Genetic testing was performed using targeted sequencing of 415 genes and multiplex ligation–dependent probe amplification (MLPA). Twenty-five mutations in eight genes were found in 17% (n = 23) of patients: WT1 (n = 10), TRIM28 (n = 4), REST (n = 3), CHEK2 (n = 3), BRCA2 (n = 2), NF1 (n = 1), RAD50 (n = 1), and CDC73 (n = 1). Large deletions of the 11p13 region were revealed in 6% (n = 5) of patients. The 11p15 locus methylation was studied in blood, tumor, and healthy kidney tissue of nine patients suspected of Beckwith–Wiedemann syndrome (BWS) using methylation-sensitive MLPA (MS–MLPA). BWS was diagnosed in 3% (n = 4) of cases (one patient had mosaic disease). Thus, genetic and epigenetic aberrations were identified in 32 WT patients (24%). These patients had a higher frequency of bilateral WT and a higher rate of abnormalities compared to patients without aberrations (56% vs. 25%, p = 0.002; and 86% vs. 25%, p < 0.0001, respectively). The detection of WT hereditary predisposing factors is crucial for treatment strategies and long-term patient surveillance. Full article
(This article belongs to the Special Issue Molecular Diagnostics and Genomics of Tumors, 2nd Edition)
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13 pages, 472 KB  
Systematic Review
The Audiological Aspect of Beckwith–Wiedemann Syndrome: A Systematic Review
by Sara Parretta, Michele Pellegrino, Laura Luppi, Elena Braglia, Elisabetta Genovese and Davide Soloperto
Genes 2026, 17(4), 453; https://doi.org/10.3390/genes17040453 - 14 Apr 2026
Viewed by 1070
Abstract
Background: Beckwith–Wiedemann syndrome (BWS) is a rare congenital overgrowth disorder caused by genetic and epigenetic alterations on chromosome 11p15.5. While macroglossia, abdominal wall defects, and tumor predisposition are well recognized, hearing impairment has been sporadically reported. Objectives: The aim of this [...] Read more.
Background: Beckwith–Wiedemann syndrome (BWS) is a rare congenital overgrowth disorder caused by genetic and epigenetic alterations on chromosome 11p15.5. While macroglossia, abdominal wall defects, and tumor predisposition are well recognized, hearing impairment has been sporadically reported. Objectives: The aim of this study is to review audiological features, surgical management, and rehabilitation in BWS, and we additionally present three cases with comprehensive longitudinal audiological follow-up. Methods: A systematic review of PubMed and Scopus was conducted according to PRISMA guidelines, including studies reporting audiological findings in patients with confirmed BWS. Studies without audiological data or reporting only normal-hearing patients were excluded. Data on hearing loss type, severity, genetics, clinical features, imaging, surgical interventions, and outcomes were extracted. A narrative synthesis was conducted; no meta-analysis was performed due to the heterogeneity and limited number of available studies. Data extraction was performed independently by two reviewers who independently screened titles, abstracts, and full texts, with disagreements resolved by discussion. In addition, three original case reports from our institution were included to further illustrate the clinical and rehabilitative variability of hearing impairment in BWS. Results: We identified 40 patients from the review, but only 12 of them reported audiological data (e.g., hearing thresholds, type of hearing loss, or diagnostic tests). Ossicular chain anomalies, particularly stapes fixation, were frequently observed. Surgical management improved hearing in selected cases, while bone conduction devices (BCD) or conventional amplification were effective alternatives when surgery was contraindicated. Genetic analyses revealed CDKN1C mutations or imprinting defects in nine patients. Conclusions: Hearing impairment in BWS is clinically relevant and often conductive, likely related to middle-ear anomalies. Early, multidisciplinary audiological evaluation—including imaging when indicated—and individualized rehabilitation can optimize auditory and communicative outcomes. The evidence is limited by the small number of studies and heterogeneous reporting of audiological outcomes. Full article
(This article belongs to the Section Human Genomics and Genetic Diseases)
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14 pages, 746 KB  
Article
Human Endogenous Retroviruses and Epigenetic Regulators Are Dysregulated in Beckwith–Wiedemann Syndrome
by Ilaria Galliano, Pier-Angelo Tovo, Cristina Calvi, Anna Pau, Anna Clemente, Paola Montanari, Stefano Gambarino, Alessandro Mussa and Massimiliano Bergallo
Curr. Issues Mol. Biol. 2026, 48(3), 328; https://doi.org/10.3390/cimb48030328 - 19 Mar 2026
Viewed by 1159
Abstract
Beckwith–Wiedemann syndrome (BWS) is an overgrowth disorder caused by genetic and epigenetic alterations at chromosome 11p15.5. Increasing evidence suggests that imprinting defects may be accompanied by broader epigenomic perturbations affecting repetitive elements such as human endogenous retroviruses (HERVs). We quantified the transcriptional levels [...] Read more.
Beckwith–Wiedemann syndrome (BWS) is an overgrowth disorder caused by genetic and epigenetic alterations at chromosome 11p15.5. Increasing evidence suggests that imprinting defects may be accompanied by broader epigenomic perturbations affecting repetitive elements such as human endogenous retroviruses (HERVs). We quantified the transcriptional levels of the HERV-H, HERV-K, and HERV-W-pol genes, the HERV-derived env genes, Syncytin-1 (SYN1) and Syncytin-2 (SYN2), and the epigenetic regulators, TRIM28 and SETDB1, in whole blood from children and adolescents with BWS, stratified by molecular subtype (ICR2 loss of methylation, n = 14; UPD(11)pat, n = 10), and compared with age-matched healthy controls using quantitative real-time PCR. The BWS samples showed significantly increased transcription of HERV-H and HERV-K relative to controls, whereas HERV-W was unchanged. The SYN1 transcripts were significantly higher in UPD(11)pat compared with controls, while SYN2 did not differ between groups. TRIM28 and SETDB1 were significantly overexpressed in BWS, irrespective of molecular subtype, and no significant differences were observed between ICR2 and UPD(11)pat for HERV-H, HERV-K, HERV-W, TRIM28, or SETDB1. These findings indicate selective dysregulation of endogenous retroelements and key repressors in BWS, consistent with epigenetic alterations extending beyond canonical imprinted loci. Full article
(This article belongs to the Section Molecular Medicine)
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18 pages, 545 KB  
Review
Imprinting Disorders and Epigenetic Alterations in Children Conceived by Assisted Reproductive Technologies: Mechanisms, Clinical Outcomes, and Prenatal Diagnosis
by Antonella Gambadauro, Valeria Chirico, Francesca Galletta, Ferdinando Gulino, Roberto Chimenz, Giorgia Serraino, Immacolata Rulli, Alessandro Manganaro, Eloisa Gitto and Lucia Marseglia
Genes 2025, 16(10), 1242; https://doi.org/10.3390/genes16101242 - 21 Oct 2025
Cited by 7 | Viewed by 6412
Abstract
Assisted reproductive technologies (ARTs) have revolutionized infertility treatment, leading to the birth of over 10 million children worldwide. Despite their success, increasing concerns have been expressed regarding the potential long-term outcomes of ART-conceived individuals, particularly in relation to imprinting disorders (IDs). IDs result [...] Read more.
Assisted reproductive technologies (ARTs) have revolutionized infertility treatment, leading to the birth of over 10 million children worldwide. Despite their success, increasing concerns have been expressed regarding the potential long-term outcomes of ART-conceived individuals, particularly in relation to imprinting disorders (IDs). IDs result from the abnormal expression of imprinted genes, which are expressed in a parent-of-origin-specific manner and regulated by epigenetic mechanisms (e.g., DNA methylation). Disruption of these processes, through environmental, genetic, or procedural factors, can lead to disorders such as Beckwith–Wiedemann syndrome (BWS), Silver–Russell syndrome (SRS), Angelman syndrome (AS), and Prader–Willi syndrome (PWS). These syndromes are characterized by distinct clinical features, including growth abnormalities, neurodevelopmental delay, endocrine dysfunction, and cancer predisposition. ART procedures, especially ovarian hyperstimulation, in vitro fertilization (IVF), and embryo culture, coincide with critical periods of epigenetic reprogramming and may contribute to epimutations in imprinting control regions. In this review, we explored epidemiology, molecular mechanisms, and prenatal diagnostic strategies related to these four IDs in the context of ART. The findings suggest a higher prevalence of BWS and SRS in ART-conceived children. The data regarding AS and PWS are more controversial, with conflicting results across populations and methodologies. Although a causal link between ART and IDs remains debated, evidence suggests the potential contribution of ART procedures to epigenetic dysregulation in susceptible individuals. Further large-scale, methodologically rigorous studies will be essential to clarify this association and inform safer ART practices. Full article
(This article belongs to the Special Issue Genes and Pediatrics)
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12 pages, 1684 KB  
Case Report
Biparental and Androgenetic Somatic Mosaicism with Presentation of Non-Syndromic Severe Neonatal Hyperinsulinemia
by Miguel Angel Alcántara-Ortigoza, Marcela Vela-Amieva, Ariadna González-del Angel, Miriam Erandi Reyna-Fabián, Liliana Fernández-Hernández, Bernardette Estandía-Ortega, Sara Guillén-López, Lizbeth López-Mejía, Isabel Ibarra-González, María de la Luz Ruiz-Reyes, Raúl Calzada-de León, Mauricio Rojas-Maruri, Flora Zárate-Mondragón, Go Hun-Seo, Hane Lee and Cynthia Fernández-Lainez
Int. J. Mol. Sci. 2025, 26(16), 7985; https://doi.org/10.3390/ijms26167985 - 19 Aug 2025
Cited by 1 | Viewed by 1573
Abstract
Genome-wide paternal uniparental isodisomy mosaicism (GWpUPIDM) is an extremely rare condition characterized by varying proportions of an androgenetic cell line across different tissues. It is primarily associated with severe congenital hyperinsulinism (CHI), Beckwith–Wiedemann syndrome (BWS) stigmata, a high risk (69–79%) of developing neoplasia [...] Read more.
Genome-wide paternal uniparental isodisomy mosaicism (GWpUPIDM) is an extremely rare condition characterized by varying proportions of an androgenetic cell line across different tissues. It is primarily associated with severe congenital hyperinsulinism (CHI), Beckwith–Wiedemann syndrome (BWS) stigmata, a high risk (69–79%) of developing neoplasia and, in some cases, additional manifestations of multilocus paternal imprinting disorders (MPIDs). We herein report the first Mexican/Latin American female patient GWpUPIDM presenting with non-syndromic CHI requiring subtotal pancreatectomy and persistent but unexplained asymptomatic diffuse hepatopathy. When she was 8.5 years old, whole-exome sequencing (WES) in blood revealed an unexpectedly high (~92%) proportion of regions of homozygosity. DNA profiling confirmed a single haploid set of paternal chromosomes in both biparental and androgenetic cell lines, with varying proportions of the androgenetic lineage in leukocytes (84%), resected pancreas (74%), buccal cells (47%), and hair follicles (0.7%). Additional WES trio analysis using gDNA from the patient’s buccal cells and blood samples from both parents revealed an allelic frequency of ~75% for the paternally inherited variant NM_000158.4(GBE1):c.555+1G>T [ClinVar:632422; dbSNP:rs759707498]. At age 8.5, the patient exhibited no clinical features of BWS, MPIDs, or neoplasia. However, she presented persistent hepatic abnormalities that warrant further investigation to rule out an unmasked glycogen storage disease type IV (OMIM#232500). Our findings emphasize the critical need for early diagnosis of GWpUPIDM using SNP-based microarray or WES with further confirmation through DNA profiling in patients presenting with CHI, placental mesenchymal dysplasia, BWS stigmata, or other MPID-related conditions, including neoplasia, to facilitate timely cancer surveillance and management. Full article
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26 pages, 1132 KB  
Review
Hepatoblastoma: From Molecular Mechanisms to Therapeutic Strategies
by Ling Fan, Jintong Na, Tieliu Shi and Yuan Liao
Curr. Oncol. 2025, 32(3), 149; https://doi.org/10.3390/curroncol32030149 - 4 Mar 2025
Cited by 12 | Viewed by 6597
Abstract
Hepatoblastoma (HB) is the most common malignant liver tumor in children under five years of age. Although globally rare, it accounts for a large proportion of liver cancer in children and has poor survival rates in high-risk and metastatic cases. This review discusses [...] Read more.
Hepatoblastoma (HB) is the most common malignant liver tumor in children under five years of age. Although globally rare, it accounts for a large proportion of liver cancer in children and has poor survival rates in high-risk and metastatic cases. This review discusses the molecular mechanisms, diagnostic methods, and therapeutic strategies of HB. Mutations in the CTNNB1 gene and the activation of the Wnt/β-catenin pathway are essential genetic factors. Furthermore, genetic syndromes like Beckwith–Wiedemann syndrome (BWS) and Familial Adenomatous Polyposis (FAP) considerably heighten the risk of associated conditions. Additionally, epigenetic mechanisms, such as DNA methylation and the influence of non-coding RNAs (ncRNAs), are pivotal drivers of tumor development. Diagnostics include serum biomarkers, immunohistochemistry (IHC), and imaging techniques. Standard treatments are chemotherapy, surgical resection, and liver transplantation (LT). Emerging therapies like immunotherapy and targeted treatments offer hope against chemotherapy resistance. Future research will prioritize personalized medicine, novel biomarkers, and molecular-targeted therapies to improve survival outcomes. Full article
(This article belongs to the Section Gastrointestinal Oncology)
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18 pages, 2696 KB  
Article
Dysfunction in IGF2R Pathway and Associated Perturbations in Autophagy and WNT Processes in Beckwith–Wiedemann Syndrome Cell Lines
by Silvana Pileggi, Elisa A. Colombo, Silvia Ancona, Roberto Quadri, Clara Bernardelli, Patrizia Colapietro, Michela Taiana, Laura Fontana, Monica Miozzo, Elena Lesma and Silvia M. Sirchia
Int. J. Mol. Sci. 2024, 25(7), 3586; https://doi.org/10.3390/ijms25073586 - 22 Mar 2024
Cited by 1 | Viewed by 3467
Abstract
Beckwith–Wiedemann Syndrome (BWS) is an imprinting disorder characterized by overgrowth, stemming from various genetic and epigenetic changes. This study delves into the role of IGF2 upregulation in BWS, focusing on insulin-like growth factor pathways, which are poorly known in this syndrome. We examined [...] Read more.
Beckwith–Wiedemann Syndrome (BWS) is an imprinting disorder characterized by overgrowth, stemming from various genetic and epigenetic changes. This study delves into the role of IGF2 upregulation in BWS, focusing on insulin-like growth factor pathways, which are poorly known in this syndrome. We examined the IGF2R, the primary receptor of IGF2, WNT, and autophagy/lysosomal pathways in BWS patient-derived lymphoblastoid cell lines, showing different genetic and epigenetic defects. The findings reveal a decreased expression and mislocalization of IGF2R protein, suggesting receptor dysfunction. Additionally, our results point to a dysregulation in the AKT/GSK-3/mTOR pathway, along with imbalances in autophagy and the WNT pathway. In conclusion, BWS cells, regardless of the genetic/epigenetic profiles, are characterized by alteration of the IGF2R pathway that is associated with the perturbation of the autophagy and lysosome processes. These alterations seem to be a key point of the molecular pathogenesis of BWS and potentially contribute to BWS’s characteristic overgrowth and cancer susceptibility. Our study also uncovers alterations in the WNT pathway across all BWS cell lines, consistent with its role in growth regulation and cancer development. Full article
(This article belongs to the Collection Feature Papers in Molecular Genetics and Genomics)
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9 pages, 230 KB  
Article
Depression and Anxiety in Pediatric Patients with Beckwith–Wiedemann Syndrome: A Pilot Study
by Grazia D’Onofrio, Annalisa Mastromatteo, Andrea Di Francesco, Antonio Izzi, Vincenzo Marchello, Aldo Manuali, Andreaserena Recchia, Maria Pia Tonti, Maria Lazzarina Russo, Maria Pia Affatato, Alessandra Rossato, Cecilia Giuntoli, Nicola Palladino, Michele Germano, Maria Rosa Pastore and Lazzaro Cassano
Children 2024, 11(3), 342; https://doi.org/10.3390/children11030342 - 13 Mar 2024
Cited by 3 | Viewed by 4192
Abstract
The study’s aim was to determine the prevalence of depression and anxiety in children with Beckwith–Wiedemann syndrome (BWS) and their effects on social relationships and family acceptance. The Pediatric Symptom Checklist—35 items (PSC-35), Screen for Child Anxiety Related Emotional Disorders (SCARED), and the [...] Read more.
The study’s aim was to determine the prevalence of depression and anxiety in children with Beckwith–Wiedemann syndrome (BWS) and their effects on social relationships and family acceptance. The Pediatric Symptom Checklist—35 items (PSC-35), Screen for Child Anxiety Related Emotional Disorders (SCARED), and the Vineland Adaptive Behavior Scale Second Edition (VABS-II) were administered to the children. The parental Acceptance Rejection/Control Questionnaire (PARQ/Control) and Zarit Burden Inventory (ZBI) were administered to parents. In total, 6 patients and 10 parents were included. Patients showed a significant presence of internalizing behavior in PSC-35 (mean, 7.66 ± 3.67), anxiety symptoms (SCARED: mean, 46.33 ± 17.50) and socialization difficulties (mean, 90.83 ± 10.09). Parents reported a perceived good acceptance (mean, 56.33 ± 1.03) and a moderate control (mean, 24.17 ± 1.83), but the burden level was ranked moderate to severe (mean, 59.33 ± 16.78). It was found that the severity of the burden level reported by parents was related to internalizing behavior (OR = 2.000; 95% CI = 0.479–3.521; p = 0.022) and anxiety symptoms (SCARED total score: OR = 3.000; 95% CI = 1.479–4.521; p = 0.005) of children. During psychological counseling in the context of BWS treatment, it is important to identify specific resources that can support patients and families in dealing with stress and identify any critical areas that could hinder the adaptation process. Full article
(This article belongs to the Section Pediatric Mental Health)
16 pages, 2314 KB  
Article
Locus-Specific and Stable DNA Demethylation at the H19/IGF2 ICR1 by Epigenome Editing Using a dCas9-SunTag System and the Catalytic Domain of TET1
by Claudia Albrecht, Nivethika Rajaram, Julian Broche, Pavel Bashtrykov and Albert Jeltsch
Genes 2024, 15(1), 80; https://doi.org/10.3390/genes15010080 - 8 Jan 2024
Cited by 7 | Viewed by 4426
Abstract
DNA methylation is critically involved in the regulation of chromatin states and cell-type-specific gene expression. The exclusive expression of imprinted genes from either the maternal or the paternal allele is regulated by allele-specific DNA methylation at imprinting control regions (ICRs). Aberrant DNA hyper- [...] Read more.
DNA methylation is critically involved in the regulation of chromatin states and cell-type-specific gene expression. The exclusive expression of imprinted genes from either the maternal or the paternal allele is regulated by allele-specific DNA methylation at imprinting control regions (ICRs). Aberrant DNA hyper- or hypomethylation at the ICR1 of the H19/IGF2 imprinting locus is characteristic for the imprinting disorders Beckwith–Wiedemann syndrome (BWS) and Silver–Russell syndrome (SRS), respectively. In this paper, we performed epigenome editing to induce targeted DNA demethylation at ICR1 in HEK293 cells using dCas9-SunTag and the catalytic domain of TET1. 5-methylcytosine (5mC) levels at the target locus were reduced up to 90% and, 27 days after transient transfection, >60% demethylation was still observed. Consistent with the stable demethylation of CTCF-binding sites within the ICR1, the occupancy of the DNA methylation-sensitive insulator CTCF protein increased by >2-fold throughout the 27 days. Additionally, the H19 expression was increased by 2-fold stably, while IGF2 was repressed though only transiently. Our data illustrate the ability of epigenome editing to implement long-term changes in DNA methylation at imprinting control regions after a single transient treatment, potentially paving the way for therapeutic epigenome editing approaches in the treatment of imprinting disorders. Full article
(This article belongs to the Section Epigenomics)
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3 pages, 186 KB  
Editorial
Introduction to the Beckwith–Wiedemann Syndrome and Cancer Special Issue
by Alessandro Mussa and Jennifer M. Kalish
Cancers 2023, 15(20), 4939; https://doi.org/10.3390/cancers15204939 - 11 Oct 2023
Cited by 4 | Viewed by 2484
Abstract
Beckwith–Wiedemann syndrome (BWS) is a genetic imprinting disorder that most commonly presents as overgrowth, macroglossia, abdominal wall defects, lateralized overgrowth, and embryonal tumors [...] Full article
(This article belongs to the Special Issue Beckwith–Wiedemann Spectrum and Cancer)
7 pages, 245 KB  
Case Report
Beckwith–Wiedemann Syndrome in Newborn of Mother with HELLP Syndrome/Preeclampsia: An Analysis of Literature and Case Report with Fetal Growth Restriction and Absence of CDKN1C Typical Pathogenic Genetic Variation
by Jakub Staniczek, Maisa Manasar-Dyrbuś, Agnieszka Drosdzol-Cop and Rafał Stojko
Int. J. Mol. Sci. 2023, 24(17), 13360; https://doi.org/10.3390/ijms241713360 - 29 Aug 2023
Cited by 2 | Viewed by 2391
Abstract
Beckwith–Wiedemann Syndrome (BWS) is an imprinting disorder, which manifests by overgrowth and predisposition to embryonal tumors. The evidence on the relationship between maternal complications such as HELLP (hemolysis, elevated liver enzymes, and low platelet count) and preeclampsia and the development of BWS in [...] Read more.
Beckwith–Wiedemann Syndrome (BWS) is an imprinting disorder, which manifests by overgrowth and predisposition to embryonal tumors. The evidence on the relationship between maternal complications such as HELLP (hemolysis, elevated liver enzymes, and low platelet count) and preeclampsia and the development of BWS in offspring is scarce. A comprehensive clinical evaluation, with genetic testing focused on screening for mutations in the CDKN1C gene, which is commonly associated with BWS, was conducted in a newborn diagnosed with BWS born to a mother with a history of preeclampsia and HELLP syndrome. The case study revealed typical clinical manifestations of BWS in the newborn, including hemihyperplasia, macroglossia, midfacial hypoplasia, omphalocele, and hypoglycemia. Surprisingly, the infant also exhibited fetal growth restriction, a finding less commonly observed in BWS cases. Genetic analysis, however, showed no mutations in the CDKN1C gene, which contrasts with the majority of BWS cases. This case report highlights the complex nature of BWS and its potential association with maternal complications such as preeclampsia and HELLP syndrome. The atypical presence of fetal growth restriction in the newborn and the absence of CDKN1C gene mutations have not been reported to date in BWS. Full article
(This article belongs to the Special Issue Pathogenesis of Pregnancy-Related Complication 2023)
19 pages, 1391 KB  
Review
Human IGF2 Gene Epigenetic and Transcriptional Regulation: At the Core of Developmental Growth and Tumorigenic Behavior
by Pierluigi Scalia, Stephen J. Williams and Yoko Fujita-Yamaguchi
Biomedicines 2023, 11(6), 1655; https://doi.org/10.3390/biomedicines11061655 - 7 Jun 2023
Cited by 14 | Viewed by 7692
Abstract
Regulation of the human IGF2 gene displays multiple layers of control, which secures a genetically and epigenetically predetermined gene expression pattern throughout embryonal growth and postnatal life. These predominantly nuclear regulatory mechanisms converge on the function of the IGF2-H19 gene cluster on Chromosome [...] Read more.
Regulation of the human IGF2 gene displays multiple layers of control, which secures a genetically and epigenetically predetermined gene expression pattern throughout embryonal growth and postnatal life. These predominantly nuclear regulatory mechanisms converge on the function of the IGF2-H19 gene cluster on Chromosome 11 and ultimately affect IGF2 gene expression. Deregulation of such control checkpoints leads to the enhancement of IGF2 gene transcription and/or transcript stabilization, ultimately leading to IGF-II peptide overproduction. This type of anomaly is responsible for the effects observed in terms of both abnormal fetal growth and increased cell proliferation, typically observed in pediatric overgrowth syndromes and cancer. We performed a review of relevant experimental work on the mechanisms affecting the human IGF2 gene at the epigenetic, transcriptional and transcript regulatory levels. The result of our work, indeed, provides a wider and diversified scenario for IGF2 gene activation than previously envisioned by shedding new light on its extended regulation. Overall, we focused on the functional integration between the epigenetic and genetic machinery driving its overexpression in overgrowth syndromes and malignancy, independently of the underlying presence of loss of imprinting (LOI). The molecular landscape provided at last strengthens the role of IGF2 in cancer initiation, progression and malignant phenotype maintenance. Finally, this review suggests potential actionable targets for IGF2 gene- and regulatory protein target-degradation therapies. Full article
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7 pages, 938 KB  
Case Report
Application of Original Therapy for Stimulation of Oral Areas Innervated by the Trigeminal Nerve in a Child with Beckwith–Wiedemann Syndrome
by Wioletta Pawlukowska, Michał Patalan, Ewelina Bagińska, Maria Giżewska and Marta Masztalewicz
Brain Sci. 2023, 13(5), 829; https://doi.org/10.3390/brainsci13050829 - 21 May 2023
Viewed by 2893
Abstract
About 90% of children diagnosed with classic BWS have macroglossia, and 40% of them are submitted to surgical tongue reduction. The purpose of our article is to present a case study of a 5-month-old child with BWS who was treated with an original [...] Read more.
About 90% of children diagnosed with classic BWS have macroglossia, and 40% of them are submitted to surgical tongue reduction. The purpose of our article is to present a case study of a 5-month-old child with BWS who was treated with an original therapy for stimulation of oral areas innervated by the trigeminal nerve. The therapy included stimulation of the upper and lower lip and muscles of the floor of the mouth. The treatment was provided by a therapist once a week. In addition, the child was stimulated every day at home by his mother. After 3 months, a significant improvement in oral alignment and function was achieved. Preliminary observations of therapy application for stimulation regions innervated by the trigeminal nerve in children with Beckwith–Wiedemann syndrome seem promising. The original therapy for stimulation of oral areas innervated by the trigeminal nerve is a good alternative to existing methods of surgical tongue reduction in children with BWS and macroglossia. Full article
(This article belongs to the Section Craniofacial and Oral Neurosciences)
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11 pages, 899 KB  
Article
Occurrence of Hepatoblastomas in Patients with Beckwith–Wiedemann Spectrum (BWSp)
by Steven D. Klein, Madison DeMarchis, Rebecca L. Linn, Suzanne P. MacFarland and Jennifer M. Kalish
Cancers 2023, 15(9), 2548; https://doi.org/10.3390/cancers15092548 - 29 Apr 2023
Cited by 13 | Viewed by 3360
Abstract
Patients with Beckwith–Wiedemann syndrome (BWS), an epigenetic imprinting disorder involving alterations in genes at the 11p15 chromosomal location, are predisposed to develop hepatoblastomas (HBs), which are rare embryonal liver tumors. Tumors can develop after a BWS diagnosis or, conversely, can be the presenting [...] Read more.
Patients with Beckwith–Wiedemann syndrome (BWS), an epigenetic imprinting disorder involving alterations in genes at the 11p15 chromosomal location, are predisposed to develop hepatoblastomas (HBs), which are rare embryonal liver tumors. Tumors can develop after a BWS diagnosis or, conversely, can be the presenting feature leading to a subsequent diagnosis. While HBs are the cardinal tumors of BWS, not all patients with the BWS spectrum will develop HBs. This observation has led to many hypotheses, including genotype-associated risk, tissue mosaicism, and tumor-specific second hits. To explore these hypotheses, we present the largest cohort of patients with BWS and HBs to date. Our cohort comprised 16 cases, and we broadened our sample size by searching the literature for all cases of BWS with HBs. From these isolated case studies, we amassed another 34 cases, bringing the total number to 50 cases of BWS-HB. We observed that paternal uniparental isodisomy (upd(11)pat) was the most common genotype, representing 38% of cases. The next most common genotype was IC2 LOM, representing 14% of cases. Five patients had clinical BWS without a molecular diagnosis. To investigate the potential mechanism of HBs in BWS, we analyzed normal liver and HB samples from eight cases and isolated tumor samples from another two cases. These samples underwent methylation testing, and 90% of our tumor samples underwent targeted cancer next-generation sequencing (NGS) panels. These matched samples provided novel insights into the oncogenesis of HBs in BWS. We found that 100% of the HBs that underwent NGS panel testing had variants in the CTNNB1 gene. We further identified three distinct groups of BWS-HB patients based on epigenotype. We also demonstrated epigenotype mosaicism, where 11p15 alterations can differ between the blood, HB, and normal liver. In light of this epigenotype mosaicism, tumor risk assessment based on blood profiling may not be accurate. Therefore, universal screening is recommended for all patients with BWS. Full article
(This article belongs to the Special Issue Beckwith–Wiedemann Spectrum and Cancer)
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13 pages, 688 KB  
Review
Implications of an Underlying Beckwith–Wiedemann Syndrome for Wilms Tumor Treatment Strategies
by Paola Quarello, Diana Carli, Davide Biasoni, Simona Gerocarni Nappo, Carlo Morosi, Roberta Cotti, Emanuela Garelli, Giulia Zucchetti, Manuela Spadea, Elisa Tirtei, Filippo Spreafico and Franca Fagioli
Cancers 2023, 15(4), 1292; https://doi.org/10.3390/cancers15041292 - 17 Feb 2023
Cited by 11 | Viewed by 5662
Abstract
Beckwith–Wiedemann Syndrome (BWS) is a pediatric overgrowth disorder involving a predisposition to embryonal tumors. Most of the tumors associated with BWS occur in the first 8–10 years of life, and the most common is Wilms tumor (WT). BWS clinical heterogeneity includes subtle overgrowth [...] Read more.
Beckwith–Wiedemann Syndrome (BWS) is a pediatric overgrowth disorder involving a predisposition to embryonal tumors. Most of the tumors associated with BWS occur in the first 8–10 years of life, and the most common is Wilms tumor (WT). BWS clinical heterogeneity includes subtle overgrowth features or even silent phenotypes, and WT may be the presenting symptom of BWS. WT in BWS individuals exhibit distinct characteristics from those of sporadic WT, and the management of these patients needs a peculiar approach. The most important feature is a higher risk of developing bilateral disease at some time in the course of the illness (synchronous bilateral disease at diagnosis or metachronous recurrence after initial presentation with unilateral disease). Accordingly, neoadjuvant chemotherapy is the recommended approach also for BWS patients with unilateral WT to facilitate nephron-sparing surgical approaches. This review emphasizes the importance of early BWS recognition, particularly if a WT has already occurred, as this will result in an urgent consideration of first-line cancer therapy. Full article
(This article belongs to the Special Issue Beckwith–Wiedemann Spectrum and Cancer)
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