Prader-Willi Syndrome: Background and Management

2017 ◽  
Vol 36 (3) ◽  
pp. 134-141 ◽  
Author(s):  
Ylenia Abdilla ◽  
Maria Andria Barbara ◽  
Jean Calleja-Agius

AbstractThe imprinting disorder, Prader-Willi syndrome, is a condition associated with the gene region 15q11.2-q.13. The phenotype includes multiple characteristics, most of which are endocrine-related. An accurate diagnosis is done mostly through pre- or postnatal genetic testing. Management is mainly aimed at correcting the endocrine dysfunctions present in these patients. Genetic testing is also important to distinguish between the different causes and to calculate the recurrence risk for parents with affected children. Although a lot has been discovered and this syndrome can be managed to a satisfactory degree, further research is still important especially regarding new potential treatments with greater efficiency and reduced invasiveness. The neonatal nurse has an important role because the management requires thorough monitoring as well as high compliance from both the patient and the carers. Thus, it is essential for the neonatal nurse to have a good knowledge of this condition.

2021 ◽  
Vol 16 (1) ◽  
Author(s):  
Bryn D. Webb ◽  
Irini Manoli ◽  
Elizabeth C. Engle ◽  
Ethylin W. Jabs

AbstractThere is a broad differential for patients presenting with congenital facial weakness, and initial misdiagnosis unfortunately is common for this phenotypic presentation. Here we present a framework to guide evaluation of patients with congenital facial weakness disorders to enable accurate diagnosis. The core categories of causes of congenital facial weakness include: neurogenic, neuromuscular junction, myopathic, and other. This diagnostic algorithm is presented, and physical exam considerations, additional follow-up studies and/or consultations, and appropriate genetic testing are discussed in detail. This framework should enable clinical geneticists, neurologists, and other rare disease specialists to feel prepared when encountering this patient population and guide diagnosis, genetic counseling, and clinical care.


2021 ◽  
Vol 36 (Supplement_1) ◽  
Author(s):  
B Lledo ◽  
R Morales ◽  
J A Ortiz ◽  
A Cascales ◽  
A Fabregat ◽  
...  

Abstract Study question Could cryptic subtelomeric traslocations in early recurrent miscarriage patients be diagnosed by preimplantation genetic testing? Summary answer PGT is a powerful tool to detect subtelomeric cryptic traslocations identifying the cause of early recurrent miscarriage and allowing subsequent genetic counselling. What is known already: Chromosome translocations are frequently associated with birth defects, spontaneous early pregnancy losses and infertility. However, submicroscopic traslocations (so-called cryptic traslocations) are too small to be detected by conventional karyotyping.. Due to balanced status, high resolution molecular techniques as arrayCGH are not able to detect it. Thus, cryptic traslocations detection is challenging. PGT is able to detect CNVs at higher resolution than routine karyotyping. Therefore, the recurrent diagnosis of CNV at embryo level could suggest a subchromosomal parental traslocation. The aim of this study is to investigate the feasibility of using PGT as an indicator of parental balanced cryptic traslocations. Study design, size, duration We included three couples who underwent PGT for unexplained repeated pregnancy loss (RPL) in our clinic from February 2020 to November 2020. Common established causes of RPL (uterine anomalies, antiphospholipid syndrome, immunological, hormonal and metabolic disorders) were previously rouled-out. Even couple karyotypes were normal. Twenty-three embryos from those couples were biopsied at blastocyst and analysed for CNVs detection using low coverage whole genome NGS. Participants/materials, setting, methods PGT by NGS was performed by Veriseq-NGS (Illumina), with previous whole genome amplification. Fluorescence in situ hybridization (FISH) using parental blood samples were performed to validate the origin of subchromosomal number variation. Commercially available subtelomeric specific probes were selected according to the CNV identified and the procedures were performed according to the manufacturer’s protocols. Main results and the role of chance Overall, CNVs of terminal duplication and deletion that imply unbalanced traslocation derivatives were detected in the 43.5% of biopsied embryos. For couple 1, 4 out of 5 embryos (80%) carried deletion of telomeric region on chromosomes 5 and 21. Three out of 6 biopsed embyos (50%) were diagnosed with subchromosomal copy variants at telomeric region on chromosomes 6 and 16 for couple 2. In the case of couple 3, three out of 12 embryos (25%) were carriers of CNV at subtelomeric region on chromosomes 2 and 6. The size of CNVs detected ranges from 8Mb to 20Mb. Accurate diagnosis with the parental study was made by FISH. The combination of probes to detect the structural chromosome alteration were: Tel5qter-LSI21q, Tel6pter-CEP16 and Tel6pter-CEP6 for each couple respectively. The FISH studies reveal that CNVs were inherited from one parent carrying the balanced cryptic traslocation. Ultimately, the abnormal karyotype from the carrier parent were 46,XY,t(5;21)(q33.2;q21.2) for couple 1, 46,XY,t(6;16)(p22.3;q22.1) for couple 2 and 46,XY,t(2;6)(p25.1;p24.2) for couple 3. Finally, each couple performed a cryotransfer of a single normal balanced embryo. Two pregnancies are ongoing. Limitations, reasons for caution The main limitation of this approach is the NGS- PGT resolution. CNVs smaller than 5Mb could not be detected. Wider implications of the findings: This study shows the value of PGT for unexplained RPL, followed by parental FISH to better characterize CNVs and identify couples in whom one partner carries a cryptic translocation. Accurate diagnosis of parental chromosome translocation can achieve with FISH only, but FISH would not be performed unless PGT showed CNVs. Trial registration number Not applicable


2019 ◽  
Author(s):  
Ali Said Al-Beshri ◽  
Nathaniel H. Robin

Marfan syndrome is an autosomal dominant syndrome that affects various connective tissues including the aorta and skeletal system. It represent a major cause of aortic dissection in individuals with seemingly unremarkable past medical history, and is the most common cause of aortic dissection in pregnancy. Prompt and accurate diagnosis can be lifesaving. Careful physical examination and detailed personal and family history is vital for clinical evaluation. Genetic testing is often needed for accurate diagnosis but result interpretation might be challenging and genetic counseling is always required. Established guidelines can help navigate the challenges in obstetric management, which may include major surgical interventions during or after pregnancy. This review contains 6 figures, 4 tables, and 40 references. Keywords: Marfan syndrome, FBN1, aortic dissection, dilatation, connective tissue, ectopia lentis, pectus, systemic score, Ghent diagnostic criteria, genetic testing.


2019 ◽  
Author(s):  
Ali Said Al-Beshri ◽  
Nathaniel H. Robin

Marfan syndrome is an autosomal dominant syndrome that affects various connective tissues including the aorta and skeletal system. It represent a major cause of aortic dissection in individuals with seemingly unremarkable past medical history, and is the most common cause of aortic dissection in pregnancy. Prompt and accurate diagnosis can be lifesaving. Careful physical examination and detailed personal and family history is vital for clinical evaluation. Genetic testing is often needed for accurate diagnosis but result interpretation might be challenging and genetic counseling is always required. Established guidelines can help navigate the challenges in obstetric management, which may include major surgical interventions during or after pregnancy. This review contains 6 figures, 4 tables, and 40 references. Keywords: Marfan syndrome, FBN1, aortic dissection, dilatation, connective tissue, ectopia lentis, pectus, systemic score, Ghent diagnostic criteria, genetic testing.


1987 ◽  
Vol 28 (1) ◽  
pp. 59-60 ◽  
Author(s):  
Suzanne B. Cassidy ◽  
John M. Opitz ◽  
James F. Reynolds

2017 ◽  
Vol 60 (4) ◽  
pp. 205-211 ◽  
Author(s):  
Noa Even-Zohar Gross ◽  
Talia Geva-Eldar ◽  
Yehuda Pollak ◽  
Harry J. Hirsch ◽  
Itai Gross ◽  
...  

2021 ◽  
pp. jmedgenet-2021-108114
Author(s):  
Valentina Serpieri ◽  
Fulvio D’Abrusco ◽  
Jennifer C Dempsey ◽  
Yong-Han Hank Cheng ◽  
Filippo Arrigoni ◽  
...  

BackgroundJoubert syndrome (JS) is a recessively inherited ciliopathy characterised by congenital ocular motor apraxia (COMA), developmental delay (DD), intellectual disability, ataxia, multiorgan involvement, and a unique cerebellar and brainstem malformation. Over 40 JS-associated genes are known with a diagnostic yield of 60%–75%.In 2018, we reported homozygous hypomorphic missense variants of the SUFU gene in two families with mild JS. Recently, heterozygous truncating SUFU variants were identified in families with dominantly inherited COMA, occasionally associated with mild DD and subtle cerebellar anomalies.MethodsWe reanalysed next generation sequencing (NGS) data in two cohorts comprising 1097 probands referred for genetic testing of JS genes.ResultsHeterozygous truncating and splice-site SUFU variants were detected in 22 patients from 17 families (1.5%) with strong male prevalence (86%), and in 8 asymptomatic parents. Patients presented with COMA, hypotonia, ataxia and mild DD, and only a third manifested intellectual disability of variable severity. Brain MRI showed consistent findings characterised by vermis hypoplasia, superior cerebellar dysplasia and subtle-to-mild abnormalities of the superior cerebellar peduncles. The same pattern was observed in two out of three tested asymptomatic parents.ConclusionHeterozygous truncating or splice-site SUFU variants cause a novel neurodevelopmental syndrome encompassing COMA and mild JS, which likely represent overlapping entities. Variants can arise de novo or be inherited from a healthy parent, representing the first cause of JS with dominant inheritance and reduced penetrance. Awareness of this condition will increase the diagnostic yield of JS genetic testing, and allow appropriate counselling about prognosis, medical monitoring and recurrence risk.


2019 ◽  
Vol 12 (1) ◽  
Author(s):  
Chang Liu ◽  
Xiangzhong Zhang ◽  
Jicheng Wang ◽  
Yan Zhang ◽  
Anshi Wang ◽  
...  

Author(s):  
Chanita Prapasrat ◽  
Preyaporn Onsod ◽  
Veerawat Korkiatsakul ◽  
Budsaba Rerkamnuaychoke ◽  
Duangrurdee Wattanasirichaigoon ◽  
...  

AbstractPrader–Willi syndrome (PWS) is a genetic disorder caused by the expression disruption of genes on the paternally inherited allele of chromosome 15q11.2-q13. Apart from clinical diagnostic criteria, PWS is confirmed by genetic testing. Methylation-specific multiplex ligation-dependent probe amplification (MS-MLPA) is one of the molecular techniques used to analyze this syndrome. This study aimed to evaluate the concordance of the test results of MS-MLPA with conventional techniques in the diagnosis of PWS in Thai patients. Forty leftover specimens from routine genetic testing (MS-PCR and FISH) were tested to obtain MS-MLPA results. By comparison, perfect concordance was shown between the result of MS-MLPA and those of conventional techniques. In conclusion, MS-MLPA is an accurate and cost-effective assay that can be used to confirm PWS diagnosis with explicit deletion of affected genes.


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